Fix comment typo.
[bpt/emacs.git] / lisp / emacs-lisp / eieio.el
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1;;; eieio.el --- Enhanced Implementation of Emacs Interpreted Objects
2;;; or maybe Eric's Implementation of Emacs Intrepreted Objects
3
4;;; Copyright (C) 1995, 1996, 1998, 1999, 2000, 2001, 2002, 2003,
5;;; 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, Inc.
6
7;; Author: Eric M. Ludlam <zappo@gnu.org>
8;; Version: 0.2
9;; Keywords: OO, lisp
10
11;; This file is part of GNU Emacs.
12
13;; GNU Emacs is free software: you can redistribute it and/or modify
14;; it under the terms of the GNU General Public License as published by
15;; the Free Software Foundation, either version 3 of the License, or
16;; (at your option) any later version.
17
18;; GNU Emacs is distributed in the hope that it will be useful,
19;; but WITHOUT ANY WARRANTY; without even the implied warranty of
20;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21;; GNU General Public License for more details.
22
23;; You should have received a copy of the GNU General Public License
24;; along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>.
25
26;;; Commentary:
27;;
28;; EIEIO is a series of Lisp routines which implements a subset of
29;; CLOS, the Common Lisp Object System. In addition, EIEIO also adds
30;; a few new features which help it integrate more strongly with the
31;; Emacs running environment.
32;;
33;; See eieio.texi for complete documentation on using this package.
34
35;; There is funny stuff going on with typep and deftype. This
36;; is the only way I seem to be able to make this stuff load properly.
37
38;; @TODO - fix :initform to be a form, not a quoted value
39;; @TODO - Prefix non-clos functions with `eieio-'.
40
41;;; Code:
42
43(require 'cl)
44(eval-when-compile (require 'eieio-comp))
45
46(defvar eieio-version "1.2"
47 "Current version of EIEIO.")
48
49(defun eieio-version ()
50 "Display the current version of EIEIO."
51 (interactive)
52 (message eieio-version))
53
54(eval-and-compile
55;; About the above. EIEIO must process it's own code when it compiles
56;; itself, thus, by eval-and-compiling outselves, we solve the problem.
57
58;; Compatibility
59(if (fboundp 'compiled-function-arglist)
60
61 ;; XEmacs can only access a compiled functions arglist like this:
62 (defalias 'eieio-compiled-function-arglist 'compiled-function-arglist)
63
64 ;; Emacs doesn't have this function, but since FUNC is a vector, we can just
65 ;; grab the appropriate element.
66 (defun eieio-compiled-function-arglist (func)
67 "Return the argument list for the compiled function FUNC."
68 (aref func 0))
69
70 )
71
72\f
73;;;
74;; Variable declarations.
75;;
76
77(defvar eieio-hook nil
78 "*This hook is executed, then cleared each time `defclass' is called.")
79
80(defvar eieio-error-unsupported-class-tags nil
81 "*Non nil to throw an error if an encountered tag us unsupported.
82This may prevent classes from CLOS applications from being used with EIEIO
83since EIEIO does not support all CLOS tags.")
84
85(defvar eieio-skip-typecheck nil
86 "*If non-nil, skip all slot typechecking.
87Set this to t permanently if a program is functioning well to get a
88small speed increase. This variable is also used internally to handle
89default setting for optimization purposes.")
90
91(defvar eieio-optimize-primary-methods-flag t
92 "Non-nil means to optimize the method dispatch on primary methods.")
93
94;; State Variables
95(defvar this nil
96 "Inside a method, this variable is the object in question.
97DO NOT SET THIS YOURSELF unless you are trying to simulate friendly slots.
98
99Note: Embedded methods are no longer supported. The variable THIS is
100still set for CLOS methods for the sake of routines like
101`call-next-method'")
102
103(defvar scoped-class nil
104 "This is set to a class when a method is running.
105This is so we know we are allowed to check private parts or how to
106execute a `call-next-method'. DO NOT SET THIS YOURSELF!")
107
108(defvar eieio-initializing-object nil
109 "Set to non-nil while initializing an object.")
110
111(defconst eieio-unbound
112 (if (and (boundp 'eieio-unbound) (symbolp eieio-unbound))
113 eieio-unbound
114 (make-symbol "unbound"))
115 "Uninterned symbol representing an unbound slot in an object.")
116
117;; This is a bootstrap for eieio-default-superclass so it has a value
118;; while it is being built itself.
119(defvar eieio-default-superclass nil)
120
121(defconst class-symbol 1 "Class's symbol (self-referencing.).")
122(defconst class-parent 2 "Class parent slot.")
123(defconst class-children 3 "Class children class slot.")
124(defconst class-symbol-obarray 4 "Obarray permitting fast access to variable position indexes.")
125;; @todo
126;; the word "public" here is leftovers from the very first version.
127;; Get rid of it!
128(defconst class-public-a 5 "Class attribute index.")
129(defconst class-public-d 6 "Class attribute defaults index.")
130(defconst class-public-doc 7 "Class documentation strings for attributes.")
131(defconst class-public-type 8 "Class type for a slot.")
132(defconst class-public-custom 9 "Class custom type for a slot.")
133(defconst class-public-custom-label 10 "Class custom group for a slot.")
134(defconst class-public-custom-group 11 "Class custom group for a slot.")
135(defconst class-public-printer 12 "Printer for a slot.")
136(defconst class-protection 13 "Class protection for a slot.")
137(defconst class-initarg-tuples 14 "Class initarg tuples list.")
138(defconst class-class-allocation-a 15 "Class allocated attributes.")
139(defconst class-class-allocation-doc 16 "Class allocated documentation.")
140(defconst class-class-allocation-type 17 "Class allocated value type.")
141(defconst class-class-allocation-custom 18 "Class allocated custom descriptor.")
142(defconst class-class-allocation-custom-label 19 "Class allocated custom descriptor.")
143(defconst class-class-allocation-custom-group 20 "Class allocated custom group.")
144(defconst class-class-allocation-printer 21 "Class allocated printer for a slot.")
145(defconst class-class-allocation-protection 22 "Class allocated protection list.")
146(defconst class-class-allocation-values 23 "Class allocated value vector.")
147(defconst class-default-object-cache 24
148 "Cache index of what a newly created object would look like.
149This will speed up instantiation time as only a `copy-sequence' will
150be needed, instead of looping over all the values and setting them
151from the default.")
152(defconst class-options 25
153 "Storage location of tagged class options.
154Stored outright without modifications or stripping.")
155
156(defconst class-num-slots 26
157 "Number of slots in the class definition object.")
158
159(defconst object-class 1 "Index in an object vector where the class is stored.")
160(defconst object-name 2 "Index in an object where the name is stored.")
161
162(defconst method-static 0 "Index into :static tag on a method.")
163(defconst method-before 1 "Index into :before tag on a method.")
164(defconst method-primary 2 "Index into :primary tag on a method.")
165(defconst method-after 3 "Index into :after tag on a method.")
166(defconst method-num-lists 4 "Number of indexes into methods vector in which groups of functions are kept.")
167(defconst method-generic-before 4 "Index into generic :before tag on a method.")
168(defconst method-generic-primary 5 "Index into generic :primary tag on a method.")
169(defconst method-generic-after 6 "Index into generic :after tag on a method.")
170(defconst method-num-slots 7 "Number of indexes into a method's vector.")
171
172;; How to specialty compile stuff.
173(autoload 'byte-compile-file-form-defmethod "eieio-comp"
174 "This function is used to byte compile methods in a nice way.")
175(put 'defmethod 'byte-hunk-handler 'byte-compile-file-form-defmethod)
176\f
177;;; Important macros used in eieio.
178;;
179(defmacro class-v (class)
180 "Internal: Return the class vector from the CLASS symbol."
181 ;; No check: If eieio gets this far, it's probably been checked already.
182 `(get ,class 'eieio-class-definition))
183
184(defmacro class-p (class)
185 "Return t if CLASS is a valid class vector.
186CLASS is a symbol."
187 ;; this new method is faster since it doesn't waste time checking lots of
188 ;; things.
189 `(condition-case nil
190 (eq (aref (class-v ,class) 0) 'defclass)
191 (error nil)))
192
193(defmacro eieio-object-p (obj)
194 "Return non-nil if OBJ is an EIEIO object."
195 `(condition-case nil
196 (let ((tobj ,obj))
197 (and (eq (aref tobj 0) 'object)
198 (class-p (aref tobj object-class))))
199 (error nil)))
200(defalias 'object-p 'eieio-object-p)
201
202(defmacro class-constructor (class)
203 "Return the symbol representing the constructor of CLASS."
204 `(aref (class-v ,class) class-symbol))
205
206(defmacro generic-p (method)
207 "Return t if symbol METHOD is a generic function.
208Only methods have the symbol `eieio-method-obarray' as a property (which
209contains a list of all bindings to that method type.)"
210 `(and (fboundp ,method) (get ,method 'eieio-method-obarray)))
211
212(defun generic-primary-only-p (method)
213 "Return t if symbol METHOD is a generic function with only primary methods.
214Only methods have the symbol `eieio-method-obarray' as a property (which
215contains a list of all bindings to that method type.)
216Methods with only primary implementations are executed in an optimized way."
217 (and (generic-p method)
218 (let ((M (get method 'eieio-method-tree)))
219 (and (< 0 (length (aref M method-primary)))
220 (not (aref M method-static))
221 (not (aref M method-before))
222 (not (aref M method-after))
223 (not (aref M method-generic-before))
224 (not (aref M method-generic-primary))
225 (not (aref M method-generic-after))))
226 ))
227
228(defun generic-primary-only-one-p (method)
229 "Return t if symbol METHOD is a generic function with only primary methods.
230Only methods have the symbol `eieio-method-obarray' as a property (which
231contains a list of all bindings to that method type.)
232Methods with only primary implementations are executed in an optimized way."
233 (and (generic-p method)
234 (let ((M (get method 'eieio-method-tree)))
235 (and (= 1 (length (aref M method-primary)))
236 (not (aref M method-static))
237 (not (aref M method-before))
238 (not (aref M method-after))
239 (not (aref M method-generic-before))
240 (not (aref M method-generic-primary))
241 (not (aref M method-generic-after))))
242 ))
243
244(defmacro class-option-assoc (list option)
245 "Return from LIST the found OPTION. Nil if it doesn't exist."
246 `(car-safe (cdr (memq ,option ,list))))
247
248(defmacro class-option (class option)
249 "Return the value stored for CLASS' OPTION.
250Return nil if that option doesn't exist."
251 `(class-option-assoc (aref (class-v ,class) class-options) ',option))
252
253(defmacro class-abstract-p (class)
254 "Return non-nil if CLASS is abstract.
255Abstract classes cannot be instantiated."
256 `(class-option ,class :abstract))
257
258(defmacro class-method-invocation-order (class)
259 "Return the invocation order of CLASS.
260Abstract classes cannot be instantiated."
261 `(or (class-option ,class :method-invocation-order)
262 :breadth-first))
263
264\f
265;;; Defining a new class
266;;
267(defmacro defclass (name superclass slots &rest options-and-doc)
268 "Define NAME as a new class derived from SUPERCLASS with SLOTS.
269OPTIONS-AND-DOC is used as the class' options and base documentation.
270SUPERCLASS is a list of superclasses to inherit from, with SLOTS
271being the slots residing in that class definition. NOTE: Currently
272only one slot may exist in SUPERCLASS as multiple inheritance is not
273yet supported. Supported tags are:
274
275 :initform - initializing form
276 :initarg - tag used during initialization
277 :accessor - tag used to create a function to access this slot
278 :allocation - specify where the value is stored.
279 defaults to `:instance', but could also be `:class'
280 :writer - a function symbol which will `write' an object's slot
281 :reader - a function symbol which will `read' an object
282 :type - the type of data allowed in this slot (see `typep')
283 :documentation
284 - A string documenting use of this slot.
285
286The following are extensions on CLOS:
287 :protection - Specify protection for this slot.
288 Defaults to `:public'. Also use `:protected', or `:private'
289 :custom - When customizing an object, the custom :type. Public only.
290 :label - A text string label used for a slot when customizing.
291 :group - Name of a customization group this slot belongs in.
292 :printer - A function to call to print the value of a slot.
293 See `eieio-override-prin1' as an example.
294
295A class can also have optional options. These options happen in place
296of documentation, (including a :documentation tag) in addition to
297documentation, or not at all. Supported options are:
298
299 :documentation - The doc-string used for this class.
300
301Options added to EIEIO:
302
303 :allow-nil-initform - Non-nil to skip typechecking of initforms if nil.
304 :custom-groups - List of custom group names. Organizes slots into
305 reasonable groups for customizations.
306 :abstract - Non-nil to prevent instances of this class.
307 If a string, use as an error string if someone does
308 try to make an instance.
309 :method-invocation-order
310 - Control the method invokation order if there is
311 multiple inheritance. Valid values are:
312 :breadth-first - The default.
313 :depth-first
314
315Options in CLOS not supported in EIEIO:
316
317 :metaclass - Class to use in place of `standard-class'
318 :default-initargs - Initargs to use when initializing new objects of
319 this class.
320
321Due to the way class options are set up, you can add any tags in you
322wish, and reference them using the function `class-option'."
323 ;; We must `eval-and-compile' this so that when we byte compile
324 ;; an eieio program, there is no need to load it ahead of time.
325 ;; It also provides lots of nice debugging errors at compile time.
326 `(eval-and-compile
327 (eieio-defclass ',name ',superclass ',slots ',options-and-doc)))
328
329(defvar eieio-defclass-autoload-map (make-vector 7 nil)
330 "Symbol map of superclasses we find in autoloads.")
331
332;; We autoload this because it's used in `make-autoload'.
333;;;###autoload
334(defun eieio-defclass-autoload (cname superclasses filename doc)
335 "Create autoload symbols for the EIEIO class CNAME.
336SUPERCLASSES are the superclasses that CNAME inherites from.
337DOC is the docstring for CNAME.
338This function creates a mock-class for CNAME and adds it into
339SUPERCLASSES as children.
340It creates an autoload function for CNAME's constructor."
341 ;; Assume we've already debugged inputs.
342
343 (let* ((oldc (when (class-p cname) (class-v cname)))
344 (newc (make-vector class-num-slots nil))
345 )
346 (if oldc
347 nil ;; Do nothing if we already have this class.
348
349 ;; Create the class in NEWC, but don't fill anything else in.
350 (aset newc 0 'defclass)
351 (aset newc class-symbol cname)
352
353 (let ((clear-parent nil))
354 ;; No parents?
355 (when (not superclasses)
356 (setq superclasses '(eieio-default-superclass)
357 clear-parent t)
358 )
359
360 ;; Hook our new class into the existing structures so we can
361 ;; autoload it later.
362 (dolist (SC superclasses)
363
364
365 ;; TODO - If we create an autoload that is in the map, that
366 ;; map needs to be cleared!
367
368
369 ;; Does our parent exist?
370 (if (not (class-p SC))
371
372 ;; Create a symbol for this parent, and then store this
373 ;; parent on that symbol.
374 (let ((sym (intern (symbol-name SC) eieio-defclass-autoload-map)))
375 (if (not (boundp sym))
376 (set sym (list cname))
377 (add-to-list sym cname))
378 )
379
380 ;; We have a parent, save the child in there.
381 (when (not (member cname (aref (class-v SC) class-children)))
382 (aset (class-v SC) class-children
383 (cons cname (aref (class-v SC) class-children)))))
384
385 ;; save parent in child
386 (aset newc class-parent (cons SC (aref newc class-parent)))
387 )
388
389 ;; turn this into a useable self-pointing symbol
390 (set cname cname)
391
392 ;; Store the new class vector definition into the symbol. We need to
393 ;; do this first so that we can call defmethod for the accessor.
394 ;; The vector will be updated by the following while loop and will not
395 ;; need to be stored a second time.
396 (put cname 'eieio-class-definition newc)
397
398 ;; Clear the parent
399 (if clear-parent (aset newc class-parent nil))
400
401 ;; Create an autoload on top of our constructor function.
402 (autoload cname filename doc nil nil)
403 (autoload (intern (concat (symbol-name cname) "-p")) filename "" nil nil)
404 (autoload (intern (concat (symbol-name cname) "-child-p")) filename "" nil nil)
405
406 ))))
407
408(defsubst eieio-class-un-autoload (cname)
409 "If class CNAME is in an autoload state, load it's file."
410 (when (eq (car-safe (symbol-function cname)) 'autoload)
411 (load-library (car (cdr (symbol-function cname))))))
412
413(defun eieio-defclass (cname superclasses slots options-and-doc)
414 "See `defclass' for more information.
415Define CNAME as a new subclass of SUPERCLASSES, with SLOTS being the
416slots residing in that class definition, and with options or documentation
417OPTIONS-AND-DOC as the toplevel documentation for this class."
418 ;; Run our eieio-hook each time, and clear it when we are done.
419 ;; This way people can add hooks safely if they want to modify eieio
420 ;; or add definitions when eieio is loaded or something like that.
421 (run-hooks 'eieio-hook)
422 (setq eieio-hook nil)
423
424 (if (not (symbolp cname)) (signal 'wrong-type-argument '(symbolp cname)))
425 (if (not (listp superclasses)) (signal 'wrong-type-argument '(listp superclasses)))
426
427 (let* ((pname (if superclasses superclasses nil))
428 (newc (make-vector class-num-slots nil))
429 (oldc (when (class-p cname) (class-v cname)))
430 (groups nil) ;; list of groups id'd from slots
431 (options nil)
432 (clearparent nil))
433
434 (aset newc 0 'defclass)
435 (aset newc class-symbol cname)
436
437 ;; If this class already existed, and we are updating it's structure,
438 ;; make sure we keep the old child list. This can cause bugs, but
439 ;; if no new slots are created, it also saves time, and prevents
440 ;; method table breakage, particularly when the users is only
441 ;; byte compiling an EIEIO file.
442 (if oldc
443 (aset newc class-children (aref oldc class-children))
444 ;; If the old class did not exist, but did exist in the autoload map, then adopt those children.
445 ;; This is like the above, but deals with autoloads nicely.
446 (let ((sym (intern-soft (symbol-name cname) eieio-defclass-autoload-map)))
447 (when sym
448 (condition-case nil
449 (aset newc class-children (symbol-value sym))
450 (error nil))
451 (unintern (symbol-name cname) eieio-defclass-autoload-map)
452 ))
453 )
454
455 (cond ((and (stringp (car options-and-doc))
456 (/= 1 (% (length options-and-doc) 2)))
457 (error "Too many arguments to `defclass'"))
458 ((and (symbolp (car options-and-doc))
459 (/= 0 (% (length options-and-doc) 2)))
460 (error "Too many arguments to `defclass'"))
461 )
462
463 (setq options
464 (if (stringp (car options-and-doc))
465 (cons :documentation options-and-doc)
466 options-and-doc))
467
468 (if pname
469 (progn
470 (while pname
471 (if (and (car pname) (symbolp (car pname)))
472 (if (not (class-p (car pname)))
473 ;; bad class
474 (error "Given parent class %s is not a class" (car pname))
475 ;; good parent class...
476 ;; save new child in parent
477 (when (not (member cname (aref (class-v (car pname)) class-children)))
478 (aset (class-v (car pname)) class-children
479 (cons cname (aref (class-v (car pname)) class-children))))
480 ;; Get custom groups, and store them into our local copy.
481 (mapc (lambda (g) (add-to-list 'groups g))
482 (class-option (car pname) :custom-groups))
483 ;; save parent in child
484 (aset newc class-parent (cons (car pname) (aref newc class-parent))))
485 (error "Invalid parent class %s" pname))
486 (setq pname (cdr pname)))
487 ;; Reverse the list of our parents so that they are prioritized in
488 ;; the same order as specified in the code.
489 (aset newc class-parent (nreverse (aref newc class-parent))) )
490 ;; If there is nothing to loop over, then inherit from the
491 ;; default superclass.
492 (unless (eq cname 'eieio-default-superclass)
493 ;; adopt the default parent here, but clear it later...
494 (setq clearparent t)
495 ;; save new child in parent
496 (if (not (member cname (aref (class-v 'eieio-default-superclass) class-children)))
497 (aset (class-v 'eieio-default-superclass) class-children
498 (cons cname (aref (class-v 'eieio-default-superclass) class-children))))
499 ;; save parent in child
500 (aset newc class-parent (list eieio-default-superclass))))
501
502 ;; turn this into a useable self-pointing symbol
503 (set cname cname)
504
505 ;; These two tests must be created right away so we can have self-
506 ;; referencing classes. ei, a class whose slot can contain only
507 ;; pointers to itself.
508
509 ;; Create the test function
510 (let ((csym (intern (concat (symbol-name cname) "-p"))))
511 (fset csym
512 (list 'lambda (list 'obj)
513 (format "Test OBJ to see if it an object of type %s" cname)
514 (list 'and '(eieio-object-p obj)
515 (list 'same-class-p 'obj cname)))))
516
517 ;; Make sure the method invocation order is a valid value.
518 (let ((io (class-option-assoc options :method-invocation-order)))
519 (when (and io (not (member io '(:depth-first :breadth-first))))
520 (error "Method invocation order %s is not allowed" io)
521 ))
522
523 ;; Create a handy child test too
524 (let ((csym (intern (concat (symbol-name cname) "-child-p"))))
525 (fset csym
526 `(lambda (obj)
527 ,(format
528 "Test OBJ to see if it an object is a child of type %s"
529 cname)
530 (and (eieio-object-p obj)
531 (object-of-class-p obj ,cname))))
532
533 ;; When using typep, (typep OBJ 'myclass) returns t for objects which
534 ;; are subclasses of myclass. For our predicates, however, it is
535 ;; important for EIEIO to be backwards compatible, where
536 ;; myobject-p, and myobject-child-p are different.
537 ;; "cl" uses this technique to specify symbols with specific typep
538 ;; test, so we can let typep have the CLOS documented behavior
539 ;; while keeping our above predicate clean.
540 (eval `(deftype ,cname ()
541 '(satisfies
542 ,(intern (concat (symbol-name cname) "-child-p")))))
543
544 )
545
546 ;; before adding new slots, lets add all the methods and classes
547 ;; in from the parent class
548 (eieio-copy-parents-into-subclass newc superclasses)
549
550 ;; Store the new class vector definition into the symbol. We need to
551 ;; do this first so that we can call defmethod for the accessor.
552 ;; The vector will be updated by the following while loop and will not
553 ;; need to be stored a second time.
554 (put cname 'eieio-class-definition newc)
555
556 ;; Query each slot in the declaration list and mangle into the
557 ;; class structure I have defined.
558 (while slots
559 (let* ((slot1 (car slots))
560 (name (car slot1))
561 (slot (cdr slot1))
562 (acces (plist-get slot ':accessor))
563 (init (or (plist-get slot ':initform)
564 (if (member ':initform slot) nil
565 eieio-unbound)))
566 (initarg (plist-get slot ':initarg))
567 (docstr (plist-get slot ':documentation))
568 (prot (plist-get slot ':protection))
569 (reader (plist-get slot ':reader))
570 (writer (plist-get slot ':writer))
571 (alloc (plist-get slot ':allocation))
572 (type (plist-get slot ':type))
573 (custom (plist-get slot ':custom))
574 (label (plist-get slot ':label))
575 (customg (plist-get slot ':group))
576 (printer (plist-get slot ':printer))
577
578 (skip-nil (class-option-assoc options :allow-nil-initform))
579 )
580
581 (if eieio-error-unsupported-class-tags
582 (let ((tmp slot))
583 (while tmp
584 (if (not (member (car tmp) '(:accessor
585 :initform
586 :initarg
587 :documentation
588 :protection
589 :reader
590 :writer
591 :allocation
592 :type
593 :custom
594 :label
595 :group
596 :printer
597 :allow-nil-initform
598 :custom-groups)))
599 (signal 'invalid-slot-type (list (car tmp))))
600 (setq tmp (cdr (cdr tmp))))))
601
602 ;; Clean up the meaning of protection.
603 (cond ((or (eq prot 'public) (eq prot :public)) (setq prot nil))
604 ((or (eq prot 'protected) (eq prot :protected)) (setq prot 'protected))
605 ((or (eq prot 'private) (eq prot :private)) (setq prot 'private))
606 ((eq prot nil) nil)
607 (t (signal 'invalid-slot-type (list ':protection prot))))
608
609 ;; Make sure the :allocation parameter has a valid value.
610 (if (not (or (not alloc) (eq alloc :class) (eq alloc :instance)))
611 (signal 'invalid-slot-type (list ':allocation alloc)))
612
613 ;; The default type specifier is supposed to be t, meaning anything.
614 (if (not type) (setq type t))
615
616 ;; Label is nil, or a string
617 (if (not (or (null label) (stringp label)))
618 (signal 'invalid-slot-type (list ':label label)))
619
620 ;; Is there an initarg, but allocation of class?
621 (if (and initarg (eq alloc :class))
622 (message "Class allocated slots do not need :initarg"))
623
624 ;; intern the symbol so we can use it blankly
625 (if initarg (set initarg initarg))
626
627 ;; The customgroup should be a list of symbols
628 (cond ((null customg)
629 (setq customg '(default)))
630 ((not (listp customg))
631 (setq customg (list customg))))
632 ;; The customgroup better be a symbol, or list of symbols.
633 (mapc (lambda (cg)
634 (if (not (symbolp cg))
635 (signal 'invalid-slot-type (list ':group cg))))
636 customg)
637
638 ;; First up, add this slot into our new class.
639 (eieio-add-new-slot newc name init docstr type custom label customg printer
640 prot initarg alloc 'defaultoverride skip-nil)
641
642 ;; We need to id the group, and store them in a group list attribute.
643 (mapc (lambda (cg) (add-to-list 'groups cg)) customg)
644
645 ;; anyone can have an accessor function. This creates a function
646 ;; of the specified name, and also performs a `defsetf' if applicable
647 ;; so that users can `setf' the space returned by this function
648 (if acces
649 (progn
650 (eieio-defmethod acces
651 (list (if (eq alloc :class) :static :primary)
652 (list (list 'this cname))
653 (format
654 "Retrieves the slot `%s' from an object of class `%s'"
655 name cname)
656 (list 'if (list 'slot-boundp 'this (list 'quote name))
657 (list 'eieio-oref 'this (list 'quote name))
658 ;; Else - Some error? nil?
659 nil
660 )))
661 ;; Thanks Pascal Bourguignon <pjb@informatimago.com>
662 ;; For this complex macro.
663 (eval (macroexpand
664 (list 'defsetf acces '(widget) '(store)
665 (list 'list ''eieio-oset 'widget
666 (list 'quote (list 'quote name)) 'store))))
667 ;;`(defsetf ,acces (widget) (store) (eieio-oset widget ',cname store))
668 )
669 )
670 ;; If a writer is defined, then create a generic method of that
671 ;; name whose purpose is to set the value of the slot.
672 (if writer
673 (progn
674 (eieio-defmethod writer
675 (list (list (list 'this cname) 'value)
676 (format "Set the slot `%s' of an object of class `%s'"
677 name cname)
678 `(setf (slot-value this ',name) value)))
679 ))
680 ;; If a reader is defined, then create a generic method
681 ;; of that name whose purpose is to access this slot value.
682 (if reader
683 (progn
684 (eieio-defmethod reader
685 (list (list (list 'this cname))
686 (format "Access the slot `%s' from object of class `%s'"
687 name cname)
688 `(slot-value this ',name)))))
689 )
690 (setq slots (cdr slots)))
691
692 ;; Now that everything has been loaded up, all our lists are backwards! Fix that up now.
693 (aset newc class-public-a (nreverse (aref newc class-public-a)))
694 (aset newc class-public-d (nreverse (aref newc class-public-d)))
695 (aset newc class-public-doc (nreverse (aref newc class-public-doc)))
696 (aset newc class-public-type
697 (apply 'vector (nreverse (aref newc class-public-type))))
698 (aset newc class-public-custom (nreverse (aref newc class-public-custom)))
699 (aset newc class-public-custom-label (nreverse (aref newc class-public-custom-label)))
700 (aset newc class-public-custom-group (nreverse (aref newc class-public-custom-group)))
701 (aset newc class-public-printer (nreverse (aref newc class-public-printer)))
702 (aset newc class-protection (nreverse (aref newc class-protection)))
703 (aset newc class-initarg-tuples (nreverse (aref newc class-initarg-tuples)))
704
705 ;; The storage for class-class-allocation-type needs to be turned into
706 ;; a vector now.
707 (aset newc class-class-allocation-type
708 (apply 'vector (aref newc class-class-allocation-type)))
709
710 ;; Also, take class allocated values, and vectorize them for speed.
711 (aset newc class-class-allocation-values
712 (apply 'vector (aref newc class-class-allocation-values)))
713
714 ;; Attach slot symbols into an obarray, and store the index of
715 ;; this slot as the variable slot in this new symbol. We need to
716 ;; know about primes, because obarrays are best set in vectors of
717 ;; prime number length, and we also need to make our vector small
718 ;; to save space, and also optimal for the number of items we have.
719 (let* ((cnt 0)
720 (pubsyms (aref newc class-public-a))
721 (prots (aref newc class-protection))
722 (l (length pubsyms))
723 (vl (let ((primes '( 3 5 7 11 13 17 19 23 29 31 37 41 43 47
724 53 59 61 67 71 73 79 83 89 97 101 )))
725 (while (and primes (< (car primes) l))
726 (setq primes (cdr primes)))
727 (car primes)))
728 (oa (make-vector vl 0))
729 (newsym))
730 (while pubsyms
731 (setq newsym (intern (symbol-name (car pubsyms)) oa))
732 (set newsym cnt)
733 (setq cnt (1+ cnt))
734 (if (car prots) (put newsym 'protection (car prots)))
735 (setq pubsyms (cdr pubsyms)
736 prots (cdr prots)))
737 (aset newc class-symbol-obarray oa)
738 )
739
740 ;; Create the constructor function
741 (if (class-option-assoc options :abstract)
742 ;; Abstract classes cannot be instantiated. Say so.
743 (let ((abs (class-option-assoc options :abstract)))
744 (if (not (stringp abs))
745 (setq abs (format "Class %s is abstract" cname)))
746 (fset cname
747 `(lambda (&rest stuff)
748 ,(format "You cannot create a new object of type %s" cname)
749 (error ,abs))))
750
751 ;; Non-abstract classes need a constructor.
752 (fset cname
753 `(lambda (newname &rest slots)
754 ,(format "Create a new object with name NAME of class type %s" cname)
755 (apply 'constructor ,cname newname slots)))
756 )
757
758 ;; Set up a specialized doc string.
759 ;; Use stored value since it is calculated in a non-trivial way
760 (put cname 'variable-documentation
761 (class-option-assoc options :documentation))
762
763 ;; We have a list of custom groups. Store them into the options.
764 (let ((g (class-option-assoc options :custom-groups)))
765 (mapc (lambda (cg) (add-to-list 'g cg)) groups)
766 (if (memq :custom-groups options)
767 (setcar (cdr (memq :custom-groups options)) g)
768 (setq options (cons :custom-groups (cons g options)))))
769
770 ;; Set up the options we have collected.
771 (aset newc class-options options)
772
773 ;; if this is a superclass, clear out parent (which was set to the
774 ;; default superclass eieio-default-superclass)
775 (if clearparent (aset newc class-parent nil))
776
777 ;; Create the cached default object.
778 (let ((cache (make-vector (+ (length (aref newc class-public-a))
779 3) nil)))
780 (aset cache 0 'object)
781 (aset cache object-class cname)
782 (aset cache object-name 'default-cache-object)
783 (let ((eieio-skip-typecheck t))
784 ;; All type-checking has been done to our satisfaction
785 ;; before this call. Don't waste our time in this call..
786 (eieio-set-defaults cache t))
787 (aset newc class-default-object-cache cache))
788
789 ;; Return our new class object
790 ;; newc
791 cname
792 ))
793
794(defun eieio-perform-slot-validation-for-default (slot spec value skipnil)
795 "For SLOT, signal if SPEC does not match VALUE.
796If SKIPNIL is non-nil, then if VALUE is nil, return t."
797 (let ((val (eieio-default-eval-maybe value)))
798 (if (and (not eieio-skip-typecheck)
799 (not (and skipnil (null val)))
800 (not (eieio-perform-slot-validation spec val)))
801 (signal 'invalid-slot-type (list slot spec val)))))
802
803(defun eieio-add-new-slot (newc a d doc type cust label custg print prot init alloc
804 &optional defaultoverride skipnil)
805 "Add into NEWC attribute A.
806If A already exists in NEWC, then do nothing. If it doesn't exist,
807then also add in D (defualt), DOC, TYPE, CUST, LABEL, CUSTG, PRINT, PROT, and INIT arg.
808Argument ALLOC specifies if the slot is allocated per instance, or per class.
809If optional DEFAULTOVERRIDE is non-nil, then if A exists in NEWC,
810we must override it's value for a default.
811Optional argument SKIPNIL indicates if type checking should be skipped
812if default value is nil."
813 ;; Make sure we duplicate those items that are sequences.
814 (condition-case nil
815 (if (sequencep d) (setq d (copy-sequence d)))
816 ;; This copy can fail on a cons cell with a non-cons in the cdr. Lets skip it if it doesn't work.
817 (error nil))
818 (if (sequencep type) (setq type (copy-sequence type)))
819 (if (sequencep cust) (setq cust (copy-sequence cust)))
820 (if (sequencep custg) (setq custg (copy-sequence custg)))
821
822 ;; To prevent override information w/out specification of storage,
823 ;; we need to do this little hack.
824 (if (member a (aref newc class-class-allocation-a)) (setq alloc ':class))
825
826 (if (or (not alloc) (and (symbolp alloc) (eq alloc ':instance)))
827 ;; In this case, we modify the INSTANCE version of a given slot.
828
829 (progn
830
831 ;; Only add this element if it is so-far unique
832 (if (not (member a (aref newc class-public-a)))
833 (progn
834 (eieio-perform-slot-validation-for-default a type d skipnil)
835 (aset newc class-public-a (cons a (aref newc class-public-a)))
836 (aset newc class-public-d (cons d (aref newc class-public-d)))
837 (aset newc class-public-doc (cons doc (aref newc class-public-doc)))
838 (aset newc class-public-type (cons type (aref newc class-public-type)))
839 (aset newc class-public-custom (cons cust (aref newc class-public-custom)))
840 (aset newc class-public-custom-label (cons label (aref newc class-public-custom-label)))
841 (aset newc class-public-custom-group (cons custg (aref newc class-public-custom-group)))
842 (aset newc class-public-printer (cons print (aref newc class-public-printer)))
843 (aset newc class-protection (cons prot (aref newc class-protection)))
844 (aset newc class-initarg-tuples (cons (cons init a) (aref newc class-initarg-tuples)))
845 )
846 ;; When defaultoverride is true, we are usually adding new local
847 ;; attributes which must override the default value of any slot
848 ;; passed in by one of the parent classes.
849 (when defaultoverride
850 ;; There is a match, and we must override the old value.
851 (let* ((ca (aref newc class-public-a))
852 (np (member a ca))
853 (num (- (length ca) (length np)))
854 (dp (if np (nthcdr num (aref newc class-public-d))
855 nil))
856 (tp (if np (nth num (aref newc class-public-type))))
857 )
858 (if (not np)
859 (error "Eieio internal error overriding default value for %s"
860 a)
861 ;; If type is passed in, is it the same?
862 (if (not (eq type t))
863 (if (not (equal type tp))
864 (error
865 "Child slot type `%s' does not match inherited type `%s' for `%s'"
866 type tp a)))
867 ;; If we have a repeat, only update the initarg...
868 (unless (eq d eieio-unbound)
869 (eieio-perform-slot-validation-for-default a tp d skipnil)
870 (setcar dp d))
871 ;; If we have a new initarg, check for it.
872 (when init
873 (let* ((inits (aref newc class-initarg-tuples))
874 (inita (rassq a inits)))
875 ;; Replace the CAR of the associate INITA.
876 ;;(message "Initarg: %S replace %s" inita init)
877 (setcar inita init)
878 ))
879
880 ;; PLN Tue Jun 26 11:57:06 2007 : The protection is
881 ;; checked and SHOULD match the superclass
882 ;; protection. Otherwise an error is thrown. However
883 ;; I wonder if a more flexible schedule might be
884 ;; implemented.
885 ;;
886 ;; EML - We used to have (if prot... here,
887 ;; but a prot of 'nil means public.
888 ;;
889 (let ((super-prot (nth num (aref newc class-protection)))
890 )
891 (if (not (eq prot super-prot))
892 (error "Child slot protection `%s' does not match inherited protection `%s' for `%s'"
893 prot super-prot a)))
894 ;; End original PLN
895
896 ;; PLN Tue Jun 26 11:57:06 2007 :
897 ;; We do a non redundant combination of ancient
898 ;; custom groups and new ones using the common lisp
899 ;; `union' method.
900 (when custg
901 (let ((where-groups
902 (nthcdr num (aref newc class-public-custom-group))))
903 (setcar where-groups
904 (union (car where-groups)
905 (if (listp custg) custg (list custg))))))
906 ;; End PLN
907
908 ;; PLN Mon Jun 25 22:44:34 2007 : If a new cust is
909 ;; set, simply replaces the old one.
910 (when cust
911 ;; (message "Custom type redefined to %s" cust)
912 (setcar (nthcdr num (aref newc class-public-custom)) cust))
913
914 ;; If a new label is specified, it simply replaces
915 ;; the old one.
916 (when label
917 ;; (message "Custom label redefined to %s" label)
918 (setcar (nthcdr num (aref newc class-public-custom-label)) label))
919 ;; End PLN
920
921 ;; PLN Sat Jun 30 17:24:42 2007 : when a new
922 ;; doc is specified, simply replaces the old one.
923 (when doc
924 ;;(message "Documentation redefined to %s" doc)
925 (setcar (nthcdr num (aref newc class-public-doc))
926 doc))
927 ;; End PLN
928
929 ;; If a new printer is specified, it simply replaces
930 ;; the old one.
931 (when print
932 ;; (message "printer redefined to %s" print)
933 (setcar (nthcdr num (aref newc class-public-printer)) print))
934
935 )))
936 ))
937
938 ;; CLASS ALLOCATED SLOTS
939 (let ((value (eieio-default-eval-maybe d)))
940 (if (not (member a (aref newc class-class-allocation-a)))
941 (progn
942 (eieio-perform-slot-validation-for-default a type value skipnil)
943 ;; Here we have found a :class version of a slot. This
944 ;; requires a very different aproach.
945 (aset newc class-class-allocation-a (cons a (aref newc class-class-allocation-a)))
946 (aset newc class-class-allocation-doc (cons doc (aref newc class-class-allocation-doc)))
947 (aset newc class-class-allocation-type (cons type (aref newc class-class-allocation-type)))
948 (aset newc class-class-allocation-custom (cons cust (aref newc class-class-allocation-custom)))
949 (aset newc class-class-allocation-custom-label (cons label (aref newc class-class-allocation-custom-label)))
950 (aset newc class-class-allocation-custom-group (cons custg (aref newc class-class-allocation-custom-group)))
951 (aset newc class-class-allocation-protection (cons prot (aref newc class-class-allocation-protection)))
952 ;; Default value is stored in the 'values section, since new objects
953 ;; can't initialize from this element.
954 (aset newc class-class-allocation-values (cons value (aref newc class-class-allocation-values))))
955 (when defaultoverride
956 ;; There is a match, and we must override the old value.
957 (let* ((ca (aref newc class-class-allocation-a))
958 (np (member a ca))
959 (num (- (length ca) (length np)))
960 (dp (if np
961 (nthcdr num
962 (aref newc class-class-allocation-values))
963 nil))
964 (tp (if np (nth num (aref newc class-class-allocation-type))
965 nil)))
966 (if (not np)
967 (error "Eieio internal error overriding default value for %s"
968 a)
969 ;; If type is passed in, is it the same?
970 (if (not (eq type t))
971 (if (not (equal type tp))
972 (error
973 "Child slot type `%s' does not match inherited type `%s' for `%s'"
974 type tp a)))
975 ;; EML - Note: the only reason to override a class bound slot
976 ;; is to change the default, so allow unbound in.
977
978 ;; If we have a repeat, only update the vlaue...
979 (eieio-perform-slot-validation-for-default a tp value skipnil)
980 (setcar dp value))
981
982 ;; PLN Tue Jun 26 11:57:06 2007 : The protection is
983 ;; checked and SHOULD match the superclass
984 ;; protection. Otherwise an error is thrown. However
985 ;; I wonder if a more flexible schedule might be
986 ;; implemented.
987 (let ((super-prot
988 (car (nthcdr num (aref newc class-class-allocation-protection)))))
989 (if (not (eq prot super-prot))
990 (error "Child slot protection `%s' does not match inherited protection `%s' for `%s'"
991 prot super-prot a)))
992 ;; We do a non redundant combination of ancient
993 ;; custom groups and new ones using the common lisp
994 ;; `union' method.
995 (when custg
996 (let ((where-groups
997 (nthcdr num (aref newc class-class-allocation-custom-group))))
998 (setcar where-groups
999 (union (car where-groups)
1000 (if (listp custg) custg (list custg))))))
1001 ;; End PLN
1002
1003 ;; PLN Sat Jun 30 17:24:42 2007 : when a new
1004 ;; doc is specified, simply replaces the old one.
1005 (when doc
1006 ;;(message "Documentation redefined to %s" doc)
1007 (setcar (nthcdr num (aref newc class-class-allocation-doc))
1008 doc))
1009 ;; End PLN
1010
1011 ;; If a new printer is specified, it simply replaces
1012 ;; the old one.
1013 (when print
1014 ;; (message "printer redefined to %s" print)
1015 (setcar (nthcdr num (aref newc class-class-allocation-printer)) print))
1016
1017 ))
1018 ))
1019 ))
1020
1021(defun eieio-copy-parents-into-subclass (newc parents)
1022 "Copy into NEWC the slots of PARENTS.
1023Follow the rules of not overwritting early parents when applying to
1024the new child class."
1025 (let ((ps (aref newc class-parent))
1026 (sn (class-option-assoc (aref newc class-options)
1027 ':allow-nil-initform)))
1028 (while ps
1029 ;; First, duplicate all the slots of the parent.
1030 (let ((pcv (class-v (car ps))))
1031 (let ((pa (aref pcv class-public-a))
1032 (pd (aref pcv class-public-d))
1033 (pdoc (aref pcv class-public-doc))
1034 (ptype (aref pcv class-public-type))
1035 (pcust (aref pcv class-public-custom))
1036 (plabel (aref pcv class-public-custom-label))
1037 (pcustg (aref pcv class-public-custom-group))
1038 (printer (aref pcv class-public-printer))
1039 (pprot (aref pcv class-protection))
1040 (pinit (aref pcv class-initarg-tuples))
1041 (i 0))
1042 (while pa
1043 (eieio-add-new-slot newc
1044 (car pa) (car pd) (car pdoc) (aref ptype i)
1045 (car pcust) (car plabel) (car pcustg)
1046 (car printer)
1047 (car pprot) (car-safe (car pinit)) nil nil sn)
1048 ;; Increment each value.
1049 (setq pa (cdr pa)
1050 pd (cdr pd)
1051 pdoc (cdr pdoc)
1052 i (1+ i)
1053 pcust (cdr pcust)
1054 plabel (cdr plabel)
1055 pcustg (cdr pcustg)
1056 printer (cdr printer)
1057 pprot (cdr pprot)
1058 pinit (cdr pinit))
1059 )) ;; while/let
1060 ;; Now duplicate all the class alloc slots.
1061 (let ((pa (aref pcv class-class-allocation-a))
1062 (pdoc (aref pcv class-class-allocation-doc))
1063 (ptype (aref pcv class-class-allocation-type))
1064 (pcust (aref pcv class-class-allocation-custom))
1065 (plabel (aref pcv class-class-allocation-custom-label))
1066 (pcustg (aref pcv class-class-allocation-custom-group))
1067 (printer (aref pcv class-class-allocation-printer))
1068 (pprot (aref pcv class-class-allocation-protection))
1069 (pval (aref pcv class-class-allocation-values))
1070 (i 0))
1071 (while pa
1072 (eieio-add-new-slot newc
1073 (car pa) (aref pval i) (car pdoc) (aref ptype i)
1074 (car pcust) (car plabel) (car pcustg)
1075 (car printer)
1076 (car pprot) nil ':class sn)
1077 ;; Increment each value.
1078 (setq pa (cdr pa)
1079 pdoc (cdr pdoc)
1080 pcust (cdr pcust)
1081 plabel (cdr plabel)
1082 pcustg (cdr pcustg)
1083 printer (cdr printer)
1084 pprot (cdr pprot)
1085 i (1+ i))
1086 ))) ;; while/let
1087 ;; Loop over each parent class
1088 (setq ps (cdr ps)))
1089 ))
1090
1091;;; CLOS style implementation of object creators.
1092;;
1093(defun make-instance (class &rest initargs)
1094 "Make a new instance of CLASS based on INITARGS.
1095CLASS is a class symbol. For example:
1096
1097 (make-instance 'foo)
1098
1099 INITARGS is a property list with keywords based on the :initarg
1100for each slot. For example:
1101
1102 (make-instance 'foo :slot1 value1 :slotN valueN)
1103
1104Compatability note:
1105
1106If the first element of INITARGS is a string, it is used as the
1107name of the class.
1108
1109In EIEIO, the class' constructor requires a name for use when printing.
1110`make-instance' in CLOS doesn't use names the way Emacs does, so the
1111class is used as the name slot instead when INITARGS doesn't start with
1112a string."
1113 (if (and (car initargs) (stringp (car initargs)))
1114 (apply (class-constructor class) initargs)
1115 (apply (class-constructor class)
1116 (cond ((symbolp class) (symbol-name class))
1117 (t (format "%S" class)))
1118 initargs)))
1119
1120\f
1121;;; CLOS methods and generics
1122;;
1123(defmacro defgeneric (method args &optional doc-string)
1124 "Create a generic function METHOD. ARGS is ignored.
1125DOC-STRING is the base documentation for this class. A generic
1126function has no body, as it's purpose is to decide which method body
1127is appropriate to use. Use `defmethod' to create methods, and it
1128calls defgeneric for you. With this implementation the arguments are
1129currently ignored. You can use `defgeneric' to apply specialized
1130top level documentation to a method."
1131 `(eieio-defgeneric (quote ,method) ,doc-string))
1132
1133(defun eieio-defgeneric-form (method doc-string)
1134 "The lambda form that would be used as the function defined on METHOD.
1135All methods should call the same EIEIO function for dispatch.
1136DOC-STRING is the documentation attached to METHOD."
1137 `(lambda (&rest local-args)
1138 ,doc-string
1139 (eieio-generic-call (quote ,method) local-args)))
1140
1141(defsubst eieio-defgeneric-reset-generic-form (method)
1142 "Setup METHOD to call the generic form."
1143 (let ((doc-string (documentation method)))
1144 (fset method (eieio-defgeneric-form method doc-string))))
1145
1146(defun eieio-defgeneric-form-primary-only (method doc-string)
1147 "The lambda form that would be used as the function defined on METHOD.
1148All methods should call the same EIEIO function for dispatch.
1149DOC-STRING is the documentation attached to METHOD."
1150 `(lambda (&rest local-args)
1151 ,doc-string
1152 (eieio-generic-call-primary-only (quote ,method) local-args)))
1153
1154(defsubst eieio-defgeneric-reset-generic-form-primary-only (method)
1155 "Setup METHOD to call the generic form."
1156 (let ((doc-string (documentation method)))
1157 (fset method (eieio-defgeneric-form-primary-only method doc-string))))
1158
1159(defun eieio-defgeneric-form-primary-only-one (method doc-string
1160 class
1161 impl
1162 )
1163 "The lambda form that would be used as the function defined on METHOD.
1164All methods should call the same EIEIO function for dispatch.
1165DOC-STRING is the documentation attached to METHOD.
1166CLASS is the class symbol needed for private method access.
1167IMPL is the symbol holding the method implementation."
1168 ;; NOTE: I tried out byte compiling this little fcn. Turns out it
1169 ;; is faster to execute this for not byte-compiled. ie, install this,
1170 ;; then measure calls going through here. I wonder why.
1171 (require 'bytecomp)
1172 (let ((byte-compile-free-references nil)
1173 (byte-compile-warnings nil)
1174 )
1175 (byte-compile-lambda
1176 `(lambda (&rest local-args)
1177 ,doc-string
1178 ;; This is a cool cheat. Usually we need to look up in the
1179 ;; method table to find out if there is a method or not. We can
1180 ;; instead make that determination at load time when there is
1181 ;; only one method. If the first arg is not a child of the class
1182 ;; of that one implementation, then clearly, there is no method def.
1183 (if (not (eieio-object-p (car local-args)))
1184 ;; Not an object. Just signal.
1185 (signal 'no-method-definition (list ,(list 'quote method) local-args))
1186
1187 ;; We do have an object. Make sure it is the right type.
1188 (if ,(if (eq class eieio-default-superclass)
1189 nil ; default superclass means just an obj. Already asked.
1190 `(not (child-of-class-p (aref (car local-args) object-class)
1191 ,(list 'quote class)))
1192 )
1193
1194 ;; If not the right kind of object, call no applicable
1195 (apply 'no-applicable-method (car local-args)
1196 ,(list 'quote method) local-args)
1197
1198 ;; It is ok, do the call.
1199 ;; Fill in inter-call variables then evaluate the method.
1200 (let ((scoped-class ,(list 'quote class))
1201 (eieio-generic-call-next-method-list nil)
1202 (eieio-generic-call-key method-primary)
1203 (eieio-generic-call-methodname ,(list 'quote method))
1204 (eieio-generic-call-arglst local-args)
1205 )
1206 (apply ,(list 'quote impl) local-args)
1207 ;(,impl local-args)
1208 ))))
1209 )
1210 ))
1211
1212(defsubst eieio-defgeneric-reset-generic-form-primary-only-one (method)
1213 "Setup METHOD to call the generic form."
1214 (let* ((doc-string (documentation method))
1215 (M (get method 'eieio-method-tree))
1216 (entry (car (aref M method-primary)))
1217 )
1218 (fset method (eieio-defgeneric-form-primary-only-one
1219 method doc-string
1220 (car entry)
1221 (cdr entry)
1222 ))))
1223
1224(defun eieio-defgeneric (method doc-string)
1225 "Engine part to `defgeneric' macro defining METHOD with DOC-STRING."
1226 (if (and (fboundp method) (not (generic-p method))
1227 (or (byte-code-function-p (symbol-function method))
1228 (not (eq 'autoload (car (symbol-function method)))))
1229 )
1230 (error "You cannot create a generic/method over an existing symbol: %s"
1231 method))
1232 ;; Don't do this over and over.
1233 (unless (fboundp 'method)
1234 ;; This defun tells emacs where the first definition of this
1235 ;; method is defined.
1236 `(defun ,method nil)
1237 ;; Make sure the method tables are installed.
1238 (eieiomt-install method)
1239 ;; Apply the actual body of this function.
1240 (fset method (eieio-defgeneric-form method doc-string))
1241 ;; Return the method
1242 'method))
1243
1244(defun eieio-unbind-method-implementations (method)
1245 "Make the generic method METHOD have no implementations..
1246It will leave the original generic function in place, but remove
1247reference to all implementations of METHOD."
1248 (put method 'eieio-method-tree nil)
1249 (put method 'eieio-method-obarray nil))
1250
1251(defmacro defmethod (method &rest args)
1252 "Create a new METHOD through `defgeneric' with ARGS.
1253
1254The second optional argument KEY is a specifier that
1255modifies how the method is called, including:
1256 :before - Method will be called before the :primary
1257 :primary - The default if not specified.
1258 :after - Method will be called after the :primary
1259 :static - First arg could be an object or class
1260The next argument is the ARGLIST. The ARGLIST specifies the arguments
1261to the method as with `defun'. The first argument can have a type
1262specifier, such as:
1263 ((VARNAME CLASS) ARG2 ...)
1264where VARNAME is the name of the local variable for the method being
1265created. The CLASS is a class symbol for a class made with `defclass'.
1266A DOCSTRING comes after the ARGLIST, and is optional.
1267All the rest of the args are the BODY of the method. A method will
1268return the value of the last form in the BODY.
1269
1270Summary:
1271
1272 (defmethod mymethod [:before | :primary | :after | :static]
1273 ((typearg class-name) arg2 &optional opt &rest rest)
1274 \"doc-string\"
1275 body)"
1276 `(eieio-defmethod (quote ,method) (quote ,args)))
1277
1278(defun eieio-defmethod (method args)
1279 "Work part of the `defmethod' macro defining METHOD with ARGS."
1280 (let ((key nil) (body nil) (firstarg nil) (argfix nil) (argclass nil) loopa)
1281 ;; find optional keys
1282 (setq key
1283 (cond ((or (eq ':BEFORE (car args))
1284 (eq ':before (car args)))
1285 (setq args (cdr args))
1286 method-before)
1287 ((or (eq ':AFTER (car args))
1288 (eq ':after (car args)))
1289 (setq args (cdr args))
1290 method-after)
1291 ((or (eq ':PRIMARY (car args))
1292 (eq ':primary (car args)))
1293 (setq args (cdr args))
1294 method-primary)
1295 ((or (eq ':STATIC (car args))
1296 (eq ':static (car args)))
1297 (setq args (cdr args))
1298 method-static)
1299 ;; Primary key
1300 (t method-primary)))
1301 ;; get body, and fix contents of args to be the arguments of the fn.
1302 (setq body (cdr args)
1303 args (car args))
1304 (setq loopa args)
1305 ;; Create a fixed version of the arguments
1306 (while loopa
1307 (setq argfix (cons (if (listp (car loopa)) (car (car loopa)) (car loopa))
1308 argfix))
1309 (setq loopa (cdr loopa)))
1310 ;; make sure there is a generic
1311 (eieio-defgeneric
1312 method
1313 (if (stringp (car body))
1314 (car body) (format "Generically created method `%s'" method)))
1315 ;; create symbol for property to bind to. If the first arg is of
1316 ;; the form (varname vartype) and `vartype' is a class, then
1317 ;; that class will be the type symbol. If not, then it will fall
1318 ;; under the type `primary' which is a non-specific calling of the
1319 ;; function.
1320 (setq firstarg (car args))
1321 (if (listp firstarg)
1322 (progn
1323 (setq argclass (nth 1 firstarg))
1324 (if (not (class-p argclass))
1325 (error "Unknown class type %s in method parameters"
1326 (nth 1 firstarg))))
1327 (if (= key -1)
1328 (signal 'wrong-type-argument (list :static 'non-class-arg)))
1329 ;; generics are higher
1330 (setq key (+ key 3)))
1331 ;; Put this lambda into the symbol so we can find it
1332 (if (byte-code-function-p (car-safe body))
1333 (eieiomt-add method (car-safe body) key argclass)
1334 (eieiomt-add method (append (list 'lambda (reverse argfix)) body)
1335 key argclass))
1336 )
1337
1338 (when eieio-optimize-primary-methods-flag
1339 ;; Optimizing step:
1340 ;;
1341 ;; If this method, after this setup, only has primary methods, then
1342 ;; we can setup the generic that way.
1343 (if (generic-primary-only-p method)
1344 ;; If there is only one primary method, then we can go one more
1345 ;; optimization step.
1346 (if (generic-primary-only-one-p method)
1347 (eieio-defgeneric-reset-generic-form-primary-only-one method)
1348 (eieio-defgeneric-reset-generic-form-primary-only method))
1349 (eieio-defgeneric-reset-generic-form method)))
1350
1351 method)
1352
1353;;; Slot type validation
1354;;
1355(defun eieio-perform-slot-validation (spec value)
1356 "Return non-nil if SPEC does not match VALUE."
1357 ;; typep is in cl-macs
1358 (or (eq spec t) ; t always passes
1359 (eq value eieio-unbound) ; unbound always passes
1360 (typep value spec)))
1361
1362(defun eieio-validate-slot-value (class slot-idx value slot)
1363 "Make sure that for CLASS referencing SLOT-IDX, that VALUE is valid.
1364Checks the :type specifier.
1365SLOT is the slot that is being checked, and is only used when throwing
1366and error."
1367 (if eieio-skip-typecheck
1368 nil
1369 ;; Trim off object IDX junk added in for the object index.
1370 (setq slot-idx (- slot-idx 3))
1371 (let ((st (aref (aref (class-v class) class-public-type) slot-idx)))
1372 (if (not (eieio-perform-slot-validation st value))
1373 (signal 'invalid-slot-type (list class slot st value))))))
1374
1375(defun eieio-validate-class-slot-value (class slot-idx value slot)
1376 "Make sure that for CLASS referencing SLOT-IDX, that VALUE is valid.
1377Checks the :type specifier.
1378SLOT is the slot that is being checked, and is only used when throwing
1379and error."
1380 (if eieio-skip-typecheck
1381 nil
1382 (let ((st (aref (aref (class-v class) class-class-allocation-type)
1383 slot-idx)))
1384 (if (not (eieio-perform-slot-validation st value))
1385 (signal 'invalid-slot-type (list class slot st value))))))
1386
1387(defun eieio-barf-if-slot-unbound (value instance slotname fn)
1388 "Throw a signal if VALUE is a representation of an UNBOUND slot.
1389INSTANCE is the object being referenced. SLOTNAME is the offending
1390slot. If the slot is ok, return VALUE.
1391Argument FN is the function calling this verifier."
1392 (if (and (eq value eieio-unbound) (not eieio-skip-typecheck))
1393 (slot-unbound instance (object-class instance) slotname fn)
1394 value))
1395
6dd12ef2
CY
1396;;; Get/Set slots in an object.
1397;;
1398(defmacro oref (obj slot)
1399 "Retrieve the value stored in OBJ in the slot named by SLOT.
1400Slot is the name of the slot when created by `defclass' or the label
1401created by the :initarg tag."
1402 `(eieio-oref ,obj (quote ,slot)))
1403
1404(defun eieio-oref (obj slot)
1405 "Return the value in OBJ at SLOT in the object vector."
1406 (if (not (or (eieio-object-p obj) (class-p obj)))
1407 (signal 'wrong-type-argument (list '(or eieio-object-p class-p) obj)))
1408 (if (not (symbolp slot))
1409 (signal 'wrong-type-argument (list 'symbolp slot)))
1410 (if (class-p obj) (eieio-class-un-autoload obj))
1411 (let* ((class (if (class-p obj) obj (aref obj object-class)))
1412 (c (eieio-slot-name-index class obj slot)))
1413 (if (not c)
1414 ;; It might be missing because it is a :class allocated slot.
1415 ;; Lets check that info out.
1416 (if (setq c (eieio-class-slot-name-index class slot))
1417 ;; Oref that slot.
1418 (aref (aref (class-v class) class-class-allocation-values) c)
1419 ;; The slot-missing method is a cool way of allowing an object author
1420 ;; to intercept missing slot definitions. Since it is also the LAST
1421 ;; thing called in this fn, it's return value would be retrieved.
1422 (slot-missing obj slot 'oref)
1423 ;;(signal 'invalid-slot-name (list (object-name obj) slot))
1424 )
1425 (if (not (eieio-object-p obj))
1426 (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1427 (eieio-barf-if-slot-unbound (aref obj c) obj slot 'oref))))
1428
1429(defalias 'slot-value 'eieio-oref)
1430(defalias 'set-slot-value 'eieio-oset)
1431
1432(defmacro oref-default (obj slot)
1433 "Gets the default value of OBJ (maybe a class) for SLOT.
1434The default value is the value installed in a class with the :initform
1435tag. SLOT can be the slot name, or the tag specified by the :initarg
1436tag in the `defclass' call."
1437 `(eieio-oref-default ,obj (quote ,slot)))
1438
1439(defun eieio-oref-default (obj slot)
1440 "Does the work for the macro `oref-default' with similar parameters.
1441Fills in OBJ's SLOT with it's default value."
1442 (if (not (or (eieio-object-p obj) (class-p obj))) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1443 (if (not (symbolp slot)) (signal 'wrong-type-argument (list 'symbolp slot)))
1444 (let* ((cl (if (eieio-object-p obj) (aref obj object-class) obj))
1445 (c (eieio-slot-name-index cl obj slot)))
1446 (if (not c)
1447 ;; It might be missing because it is a :class allocated slot.
1448 ;; Lets check that info out.
1449 (if (setq c
1450 (eieio-class-slot-name-index cl slot))
1451 ;; Oref that slot.
1452 (aref (aref (class-v cl) class-class-allocation-values)
1453 c)
1454 (slot-missing obj slot 'oref-default)
1455 ;;(signal 'invalid-slot-name (list (class-name cl) slot))
1456 )
1457 (eieio-barf-if-slot-unbound
1458 (let ((val (nth (- c 3) (aref (class-v cl) class-public-d))))
1459 (eieio-default-eval-maybe val))
1460 obj cl 'oref-default))))
1461
1462(defun eieio-default-eval-maybe (val)
1463 "Check VAL, and return what `oref-default' would provide."
1464 ;; check for quoted things, and unquote them
1465 (if (and (listp val) (eq (car val) 'quote))
1466 (car (cdr val))
1467 ;; return it verbatim
1468 val))
1469
1470;;; Object Set macros
1471;;
1472(defmacro oset (obj slot value)
1473 "Set the value in OBJ for slot SLOT to VALUE.
1474SLOT is the slot name as specified in `defclass' or the tag created
1475with in the :initarg slot. VALUE can be any Lisp object."
1476 `(eieio-oset ,obj (quote ,slot) ,value))
1477
1478(defun eieio-oset (obj slot value)
1479 "Does the work for the macro `oset'.
1480Fills in OBJ's SLOT with VALUE."
1481 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1482 (if (not (symbolp slot)) (signal 'wrong-type-argument (list 'symbolp slot)))
1483 (let ((c (eieio-slot-name-index (object-class-fast obj) obj slot)))
1484 (if (not c)
1485 ;; It might be missing because it is a :class allocated slot.
1486 ;; Lets check that info out.
1487 (if (setq c
1488 (eieio-class-slot-name-index (aref obj object-class) slot))
1489 ;; Oset that slot.
1490 (progn
1491 (eieio-validate-class-slot-value (object-class-fast obj) c value slot)
1492 (aset (aref (class-v (aref obj object-class))
1493 class-class-allocation-values)
1494 c value))
1495 ;; See oref for comment on `slot-missing'
1496 (slot-missing obj slot 'oset value)
1497 ;;(signal 'invalid-slot-name (list (object-name obj) slot))
1498 )
1499 (eieio-validate-slot-value (object-class-fast obj) c value slot)
1500 (aset obj c value))))
1501
1502(defmacro oset-default (class slot value)
1503 "Set the default slot in CLASS for SLOT to VALUE.
1504The default value is usually set with the :initform tag during class
1505creation. This allows users to change the default behavior of classes
1506after they are created."
1507 `(eieio-oset-default ,class (quote ,slot) ,value))
1508
1509(defun eieio-oset-default (class slot value)
1510 "Does the work for the macro `oset-default'.
1511Fills in the default value in CLASS' in SLOT with VALUE."
1512 (if (not (class-p class)) (signal 'wrong-type-argument (list 'class-p class)))
1513 (if (not (symbolp slot)) (signal 'wrong-type-argument (list 'symbolp slot)))
1514 (let* ((scoped-class class)
1515 (c (eieio-slot-name-index class nil slot)))
1516 (if (not c)
1517 ;; It might be missing because it is a :class allocated slot.
1518 ;; Lets check that info out.
1519 (if (setq c (eieio-class-slot-name-index class slot))
1520 (progn
1521 ;; Oref that slot.
1522 (eieio-validate-class-slot-value class c value slot)
1523 (aset (aref (class-v class) class-class-allocation-values) c
1524 value))
1525 (signal 'invalid-slot-name (list (class-name class) slot)))
1526 (eieio-validate-slot-value class c value slot)
1527 ;; Set this into the storage for defaults.
1528 (setcar (nthcdr (- c 3) (aref (class-v class) class-public-d))
1529 value)
1530 ;; Take the value, and put it into our cache object.
1531 (eieio-oset (aref (class-v class) class-default-object-cache)
1532 slot value)
1533 )))
1534
1535;;; Handy CLOS macros
1536;;
1537(defmacro with-slots (spec-list object &rest body)
1538 "Bind SPEC-LIST lexically to slot values in OBJECT, and execute BODY.
1539This establishes a lexical environment for referring to the slots in
1540the instance named by the given slot-names as though they were
1541variables. Within such a context the value of the slot can be
1542specified by using its slot name, as if it were a lexically bound
1543variable. Both setf and setq can be used to set the value of the
1544slot.
1545
1546SPEC-LIST is of a form similar to `let'. For example:
1547
1548 ((VAR1 SLOT1)
1549 SLOT2
1550 SLOTN
1551 (VARN+1 SLOTN+1))
1552
1553Where each VAR is the local variable given to the associated
1554SLOT. A Slot specified without a variable name is given a
1555variable name of the same name as the slot."
1556 ;; Transform the spec-list into a symbol-macrolet spec-list.
1557 (let ((mappings (mapcar (lambda (entry)
1558 (let ((var (if (listp entry) (car entry) entry))
1559 (slot (if (listp entry) (cadr entry) entry)))
1560 (list var `(slot-value ,object ',slot))))
1561 spec-list)))
1562 (append (list 'symbol-macrolet mappings)
1563 body)))
1564(put 'with-slots 'lisp-indent-function 2)
1565
1566\f
1567;;; Simple generators, and query functions. None of these would do
1568;; well embedded into an object.
1569;;
1570(defmacro object-class-fast (obj) "Return the class struct defining OBJ with no check."
1571 `(aref ,obj object-class))
1572
1573(defun class-name (class) "Return a Lisp like symbol name for CLASS."
1574 (if (not (class-p class)) (signal 'wrong-type-argument (list 'class-p class)))
1575 ;; I think this is supposed to return a symbol, but to me CLASS is a symbol,
1576 ;; and I wanted a string. Arg!
1577 (format "#<class %s>" (symbol-name class)))
1578
1579(defun object-name (obj &optional extra)
1580 "Return a Lisp like symbol string for object OBJ.
1581If EXTRA, include that in the string returned to represent the symbol."
1582 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1583 (format "#<%s %s%s>" (symbol-name (object-class-fast obj))
1584 (aref obj object-name) (or extra "")))
1585
1586(defun object-name-string (obj) "Return a string which is OBJ's name."
1587 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1588 (aref obj object-name))
1589
1590(defun object-set-name-string (obj name) "Set the string which is OBJ's NAME."
1591 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1592 (if (not (stringp name)) (signal 'wrong-type-argument (list 'stringp name)))
1593 (aset obj object-name name))
1594
1595(defun object-class (obj) "Return the class struct defining OBJ."
1596 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1597 (object-class-fast obj))
1598(defalias 'class-of 'object-class)
1599
1600(defun object-class-name (obj) "Return a Lisp like symbol name for OBJ's class."
1601 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1602 (class-name (object-class-fast obj)))
1603
1604(defmacro class-parents-fast (class) "Return parent classes to CLASS with no check."
1605 `(aref (class-v ,class) class-parent))
1606
1607(defun class-parents (class)
1608 "Return parent classes to CLASS. (overload of variable).
1609
1610The CLOS function `class-direct-superclasses' is aliased to this function."
1611 (if (not (class-p class)) (signal 'wrong-type-argument (list 'class-p class)))
1612 (class-parents-fast class))
1613
1614(defmacro class-children-fast (class) "Return child classes to CLASS with no check."
1615 `(aref (class-v ,class) class-children))
1616
1617(defun class-children (class)
1618"Return child classses to CLASS.
1619
1620The CLOS function `class-direct-subclasses' is aliased to this function."
1621 (if (not (class-p class)) (signal 'wrong-type-argument (list 'class-p class)))
1622 (class-children-fast class))
1623
1624;; Official CLOS functions.
1625(defalias 'class-direct-superclasses 'class-parents)
1626(defalias 'class-direct-subclasses 'class-children)
1627
1628(defmacro class-parent-fast (class) "Return first parent class to CLASS with no check."
1629 `(car (class-parents-fast ,class)))
1630
1631(defmacro class-parent (class) "Return first parent class to CLASS. (overload of variable)."
1632 `(car (class-parents ,class)))
1633
1634(defmacro same-class-fast-p (obj class) "Return t if OBJ is of class-type CLASS with no error checking."
1635 `(eq (aref ,obj object-class) ,class))
1636
1637(defun same-class-p (obj class) "Return t if OBJ is of class-type CLASS."
1638 (if (not (class-p class)) (signal 'wrong-type-argument (list 'class-p class)))
1639 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1640 (same-class-fast-p obj class))
1641
1642(defun object-of-class-p (obj class)
1643 "Return non-nil if OBJ is an instance of CLASS or CLASS' subclasses."
1644 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1645 ;; class will be checked one layer down
1646 (child-of-class-p (aref obj object-class) class))
1647;; Backwards compatibility
1648(defalias 'obj-of-class-p 'object-of-class-p)
1649
1650(defun child-of-class-p (child class)
1651 "If CHILD class is a subclass of CLASS."
1652 (if (not (class-p class)) (signal 'wrong-type-argument (list 'class-p class)))
1653 (if (not (class-p child)) (signal 'wrong-type-argument (list 'class-p child)))
1654 (let ((p nil))
1655 (while (and child (not (eq child class)))
1656 (setq p (append p (aref (class-v child) class-parent))
1657 child (car p)
1658 p (cdr p)))
1659 (if child t)))
1660
1661(defun object-slots (obj) "List of slots available in OBJ."
1662 (if (not (eieio-object-p obj)) (signal 'wrong-type-argument (list 'eieio-object-p obj)))
1663 (aref (class-v (object-class-fast obj)) class-public-a))
1664
1665(defun class-slot-initarg (class slot) "Fetch from CLASS, SLOT's :initarg."
1666 (if (not (class-p class)) (signal 'wrong-type-argument (list 'class-p class)))
1667 (let ((ia (aref (class-v class) class-initarg-tuples))
1668 (f nil))
1669 (while (and ia (not f))
1670 (if (eq (cdr (car ia)) slot)
1671 (setq f (car (car ia))))
1672 (setq ia (cdr ia)))
1673 f))
1674
1675;;; CLOS queries into classes and slots
1676;;
1677(defun slot-boundp (object slot)
1678 "Non-nil if OBJECT's SLOT is bound.
1679Setting a slot's value makes it bound. Calling `slot-makeunbound' will
1680make a slot unbound.
1681OBJECT can be an instance or a class."
1682 ;; Skip typechecking while retrieving this value.
1683 (let ((eieio-skip-typecheck t))
1684 ;; Return nil if the magic symbol is in there.
1685 (if (eieio-object-p object)
1686 (if (eq (eieio-oref object slot) eieio-unbound) nil t)
1687 (if (class-p object)
1688 (if (eq (eieio-oref-default object slot) eieio-unbound) nil t)
1689 (signal 'wrong-type-argument (list 'eieio-object-p object))))))
1690
1691(defun slot-makeunbound (object slot)
1692 "In OBJECT, make SLOT unbound."
1693 (eieio-oset object slot eieio-unbound))
1694
1695(defun slot-exists-p (object-or-class slot)
1696 "Non-nil if OBJECT-OR-CLASS has SLOT."
1697 (let ((cv (class-v (cond ((eieio-object-p object-or-class)
1698 (object-class object-or-class))
1699 ((class-p object-or-class)
1700 object-or-class))
1701 )))
1702 (or (memq slot (aref cv class-public-a))
1703 (memq slot (aref cv class-class-allocation-a)))
1704 ))
1705
1706(defun find-class (symbol &optional errorp)
1707 "Return the class that SYMBOL represents.
1708If there is no class, nil is returned if ERRORP is nil.
1709If ERRORP is non-nil, `wrong-argument-type' is signaled."
1710 (if (not (class-p symbol))
1711 (if errorp (signal 'wrong-type-argument (list 'class-p symbol))
1712 nil)
1713 (class-v symbol)))
1714
1715;;; Slightly more complex utility functions for objects
1716;;
1717(defun object-assoc (key slot list)
1718 "Return an object if KEY is `equal' to SLOT's value of an object in LIST.
1719LIST is a list of objects who's slots are searched.
1720Objects in LIST do not need to have a slot named SLOT, nor does
1721SLOT need to be bound. If these errors occur, those objects will
1722be ignored."
1723 (if (not (listp list)) (signal 'wrong-type-argument (list 'listp list)))
1724 (while (and list (not (condition-case nil
1725 ;; This prevents errors for missing slots.
1726 (equal key (eieio-oref (car list) slot))
1727 (error nil))))
1728 (setq list (cdr list)))
1729 (car list))
1730
1731(defun object-assoc-list (slot list)
1732 "Return an association list with the contents of SLOT as the key element.
1733LIST must be a list of objects with SLOT in it.
1734This is useful when you need to do completing read on an object group."
1735 (if (not (listp list)) (signal 'wrong-type-argument (list 'listp list)))
1736 (let ((assoclist nil))
1737 (while list
1738 (setq assoclist (cons (cons (eieio-oref (car list) slot)
1739 (car list))
1740 assoclist))
1741 (setq list (cdr list)))
1742 (nreverse assoclist)))
1743
1744(defun object-assoc-list-safe (slot list)
1745 "Return an association list with the contents of SLOT as the key element.
1746LIST must be a list of objects, but those objects do not need to have
1747SLOT in it. If it does not, then that element is left out of the association
1748list."
1749 (if (not (listp list)) (signal 'wrong-type-argument (list 'listp list)))
1750 (let ((assoclist nil))
1751 (while list
1752 (if (slot-exists-p (car list) slot)
1753 (setq assoclist (cons (cons (eieio-oref (car list) slot)
1754 (car list))
1755 assoclist)))
1756 (setq list (cdr list)))
1757 (nreverse assoclist)))
1758
1759(defun object-add-to-list (object slot item &optional append)
1760 "In OBJECT's SLOT, add ITEM to the list of elements.
1761Optional argument APPEND indicates we need to append to the list.
1762If ITEM already exists in the list in SLOT, then it is not added.
1763Comparison is done with `equal' through the `member' function call.
1764If SLOT is unbound, bind it to the list containing ITEM."
1765 (let (ov)
1766 ;; Find the originating list.
1767 (if (not (slot-boundp object slot))
1768 (setq ov (list item))
1769 (setq ov (eieio-oref object slot))
1770 ;; turn it into a list.
1771 (unless (listp ov)
1772 (setq ov (list ov)))
1773 ;; Do the combination
1774 (if (not (member item ov))
1775 (setq ov
1776 (if append
1777 (append ov (list item))
1778 (cons item ov)))))
1779 ;; Set back into the slot.
1780 (eieio-oset object slot ov)))
1781
1782(defun object-remove-from-list (object slot item)
1783 "In OBJECT's SLOT, remove occurrences of ITEM.
1784Deletion is done with `delete', which deletes by side effect
1785and comparisons are done with `equal'.
1786If SLOT is unbound, do nothing."
1787 (if (not (slot-boundp object slot))
1788 nil
1789 (eieio-oset object slot (delete item (eieio-oref object slot)))))
1790\f
1791;;; EIEIO internal search functions
1792;;
1793(defun eieio-slot-originating-class-p (start-class slot)
1794 "Return Non-nil if START-CLASS is the first class to define SLOT.
1795This is for testing if `scoped-class' is the class that defines SLOT
1796so that we can protect private slots."
1797 (let ((par (class-parents start-class))
1798 (ret t))
1799 (if (not par)
1800 t
1801 (while (and par ret)
1802 (if (intern-soft (symbol-name slot)
1803 (aref (class-v (car par))
1804 class-symbol-obarray))
1805 (setq ret nil))
1806 (setq par (cdr par)))
1807 ret)))
1808
1809(defun eieio-slot-name-index (class obj slot)
1810 "In CLASS for OBJ find the index of the named SLOT.
1811The slot is a symbol which is installed in CLASS by the `defclass'
1812call. OBJ can be nil, but if it is an object, and the slot in question
1813is protected, access will be allowed if obj is a child of the currently
1814`scoped-class'.
1815If SLOT is the value created with :initarg instead,
1816reverse-lookup that name, and recurse with the associated slot value."
1817 ;; Removed checks to outside this call
1818 (let* ((fsym (intern-soft (symbol-name slot)
1819 (aref (class-v class)
1820 class-symbol-obarray)))
1821 (fsi (if (symbolp fsym) (symbol-value fsym) nil)))
1822 (if (integerp fsi)
1823 (cond
1824 ((not (get fsym 'protection))
1825 (+ 3 fsi))
1826 ((and (eq (get fsym 'protection) 'protected)
1827 scoped-class
1828 (or (child-of-class-p class scoped-class)
1829 (and (eieio-object-p obj)
1830 (child-of-class-p class (object-class obj)))))
1831 (+ 3 fsi))
1832 ((and (eq (get fsym 'protection) 'private)
1833 (or (and scoped-class
1834 (eieio-slot-originating-class-p scoped-class slot))
1835 eieio-initializing-object))
1836 (+ 3 fsi))
1837 (t nil))
1838 (let ((fn (eieio-initarg-to-attribute class slot)))
1839 (if fn (eieio-slot-name-index class obj fn) nil)))))
1840
1841(defun eieio-class-slot-name-index (class slot)
1842 "In CLASS find the index of the named SLOT.
1843The slot is a symbol which is installed in CLASS by the `defclass'
1844call. If SLOT is the value created with :initarg instead,
1845reverse-lookup that name, and recurse with the associated slot value."
1846 ;; This will happen less often, and with fewer slots. Do this the
1847 ;; storage cheap way.
1848 (let* ((a (aref (class-v class) class-class-allocation-a))
1849 (l1 (length a))
1850 (af (memq slot a))
1851 (l2 (length af)))
1852 ;; Slot # is length of the total list, minus the remaining list of
1853 ;; the found slot.
1854 (if af (- l1 l2))))
1855\f
1856;;; CLOS generics internal function handling
1857;;
1858(defvar eieio-generic-call-methodname nil
1859 "When using `call-next-method', provides a context on how to do it.")
1860(defvar eieio-generic-call-arglst nil
1861 "When using `call-next-method', provides a context for parameters.")
1862(defvar eieio-generic-call-key nil
1863 "When using `call-next-method', provides a context for the current key.
1864Keys are a number representing :before, :primary, and :after methods.")
1865(defvar eieio-generic-call-next-method-list nil
1866 "When executing a PRIMARY or STATIC method, track the 'next-method'.
1867During executions, the list is first generated, then as each next method
1868is called, the next method is popped off the stack.")
1869
1870(defvar eieio-pre-method-execution-hooks nil
1871 "*Hooks run just before a method is executed.
1872The hook function must accept on argument, this list of forms
1873about to be executed.")
1874
1875(defun eieio-generic-call (method args)
1876 "Call METHOD with ARGS.
1877ARGS provides the context on which implementation to use.
1878This should only be called from a generic function."
1879 ;; We must expand our arguments first as they are always
1880 ;; passed in as quoted symbols
1881 (let ((newargs nil) (mclass nil) (lambdas nil) (tlambdas nil) (keys nil)
1882 (eieio-generic-call-methodname method)
1883 (eieio-generic-call-arglst args)
1884 (firstarg nil)
1885 (primarymethodlist nil))
1886 ;; get a copy
1887 (setq newargs args
1888 firstarg (car newargs))
1889 ;; Is the class passed in autoloaded?
1890 ;; Since class names are also constructors, they can be autoloaded
1891 ;; via the autoload command. Check for this, and load them in.
1892 ;; It's ok if it doesn't turn out to be a class. Probably want that
1893 ;; function loaded anyway.
1894 (if (and (symbolp firstarg)
1895 (fboundp firstarg)
1896 (listp (symbol-function firstarg))
1897 (eq 'autoload (car (symbol-function firstarg))))
1898 (load (nth 1 (symbol-function firstarg))))
1899 ;; Determine the class to use.
1900 (cond ((eieio-object-p firstarg)
1901 (setq mclass (object-class-fast firstarg)))
1902 ((class-p firstarg)
1903 (setq mclass firstarg))
1904 )
1905 ;; Make sure the class is a valid class
1906 ;; mclass can be nil (meaning a generic for should be used.
1907 ;; mclass cannot have a value that is not a class, however.
1908 (when (and (not (null mclass)) (not (class-p mclass)))
1909 (error "Cannot dispatch method %S on class %S"
1910 method mclass)
1911 )
1912 ;; Now create a list in reverse order of all the calls we have
1913 ;; make in order to successfully do this right. Rules:
1914 ;; 1) Only call generics if scoped-class is not defined
1915 ;; This prevents multiple calls in the case of recursion
1916 ;; 2) Only call static if this is a static method.
1917 ;; 3) Only call specifics if the definition allows for them.
1918 ;; 4) Call in order based on :before, :primary, and :after
1919 (when (eieio-object-p firstarg)
1920 ;; Non-static calls do all this stuff.
1921
1922 ;; :after methods
1923 (setq tlambdas
1924 (if mclass
1925 (eieiomt-method-list method method-after mclass)
1926 (list (eieio-generic-form method method-after nil)))
1927 ;;(or (and mclass (eieio-generic-form method method-after mclass))
1928 ;; (eieio-generic-form method method-after nil))
1929 )
1930 (setq lambdas (append tlambdas lambdas)
1931 keys (append (make-list (length tlambdas) method-after) keys))
1932
1933 ;; :primary methods
1934 (setq tlambdas
1935 (or (and mclass (eieio-generic-form method method-primary mclass))
1936 (eieio-generic-form method method-primary nil)))
1937 (when tlambdas
1938 (setq lambdas (cons tlambdas lambdas)
1939 keys (cons method-primary keys)
1940 primarymethodlist
1941 (eieiomt-method-list method method-primary mclass)))
1942
1943 ;; :before methods
1944 (setq tlambdas
1945 (if mclass
1946 (eieiomt-method-list method method-before mclass)
1947 (list (eieio-generic-form method method-before nil)))
1948 ;;(or (and mclass (eieio-generic-form method method-before mclass))
1949 ;; (eieio-generic-form method method-before nil))
1950 )
1951 (setq lambdas (append tlambdas lambdas)
1952 keys (append (make-list (length tlambdas) method-before) keys))
1953 )
1954
1955 ;; If there were no methods found, then there could be :static methods.
1956 (when (not lambdas)
1957 (setq tlambdas
1958 (eieio-generic-form method method-static mclass))
1959 (setq lambdas (cons tlambdas lambdas)
1960 keys (cons method-static keys)
1961 primarymethodlist ;; Re-use even with bad name here
1962 (eieiomt-method-list method method-static mclass)))
1963
1964 (run-hook-with-args 'eieio-pre-method-execution-hooks
1965 primarymethodlist)
1966
1967 ;; Now loop through all occurances forms which we must execute
1968 ;; (which are happily sorted now) and execute them all!
1969 (let ((rval nil) (lastval nil) (rvalever nil) (found nil))
1970 (while lambdas
1971 (if (car lambdas)
1972 (let* ((scoped-class (cdr (car lambdas)))
1973 (eieio-generic-call-key (car keys))
1974 (has-return-val
1975 (or (= eieio-generic-call-key method-primary)
1976 (= eieio-generic-call-key method-static)))
1977 (eieio-generic-call-next-method-list
1978 ;; Use the cdr, as the first element is the fcn
1979 ;; we are calling right now.
1980 (when has-return-val (cdr primarymethodlist)))
1981 )
1982 (setq found t)
1983 ;;(setq rval (apply (car (car lambdas)) newargs))
1984 (setq lastval (apply (car (car lambdas)) newargs))
1985 (when has-return-val
1986 (setq rval lastval
1987 rvalever t))
1988 ))
1989 (setq lambdas (cdr lambdas)
1990 keys (cdr keys)))
1991 (if (not found)
1992 (if (eieio-object-p (car args))
1993 (setq rval (apply 'no-applicable-method (car args) method args)
1994 rvalever t)
1995 (signal
1996 'no-method-definition
1997 (list method args))))
1998 ;; Right Here... it could be that lastval is returned when
1999 ;; rvalever is nil. Is that right?
2000 rval)))
2001
2002(defun eieio-generic-call-primary-only (method args)
2003 "Call METHOD with ARGS for methods with only :PRIMARY implementations.
2004ARGS provides the context on which implementation to use.
2005This should only be called from a generic function.
2006
2007This method is like `eieio-generic-call', but only
2008implementations in the :PRIMARY slot are queried. After many
2009years of use, it appears that over 90% of methods in use
2010have :PRIMARY implementations only. We can therefore optimize
2011for this common case to improve performance."
2012 ;; We must expand our arguments first as they are always
2013 ;; passed in as quoted symbols
2014 (let ((newargs nil) (mclass nil) (lambdas nil)
2015 (eieio-generic-call-methodname method)
2016 (eieio-generic-call-arglst args)
2017 (firstarg nil)
2018 (primarymethodlist nil)
2019 )
2020 ;; get a copy
2021 (setq newargs args
2022 firstarg (car newargs))
2023
2024 ;; Determine the class to use.
2025 (cond ((eieio-object-p firstarg)
2026 (setq mclass (object-class-fast firstarg)))
2027 ((not firstarg)
2028 (error "Method %s called on nil" method))
2029 ((not (eieio-object-p firstarg))
2030 (error "Primary-only method %s called on something not an object" method))
2031 (t
2032 (error "EIEIO Error: Improperly classified method %s as primary only"
2033 method)
2034 ))
2035 ;; Make sure the class is a valid class
2036 ;; mclass can be nil (meaning a generic for should be used.
2037 ;; mclass cannot have a value that is not a class, however.
2038 (when (null mclass)
2039 (error "Cannot dispatch method %S on class %S" method mclass)
2040 )
2041
2042 ;; :primary methods
2043 (setq lambdas (eieio-generic-form method method-primary mclass))
2044 (setq primarymethodlist ;; Re-use even with bad name here
2045 (eieiomt-method-list method method-primary mclass))
2046
2047 ;; Now loop through all occurances forms which we must execute
2048 ;; (which are happily sorted now) and execute them all!
2049 (let* ((rval nil) (lastval nil) (rvalever nil)
2050 (scoped-class (cdr lambdas))
2051 (eieio-generic-call-key method-primary)
2052 ;; Use the cdr, as the first element is the fcn
2053 ;; we are calling right now.
2054 (eieio-generic-call-next-method-list (cdr primarymethodlist))
2055 )
2056
2057 (if (or (not lambdas) (not (car lambdas)))
2058
2059 ;; No methods found for this impl...
2060 (if (eieio-object-p (car args))
2061 (setq rval (apply 'no-applicable-method (car args) method args)
2062 rvalever t)
2063 (signal
2064 'no-method-definition
2065 (list method args)))
2066
2067 ;; Do the regular implementation here.
2068
2069 (run-hook-with-args 'eieio-pre-method-execution-hooks
2070 lambdas)
2071
2072 (setq lastval (apply (car lambdas) newargs))
2073 (setq rval lastval
2074 rvalever t)
2075 )
2076
2077 ;; Right Here... it could be that lastval is returned when
2078 ;; rvalever is nil. Is that right?
2079 rval)))
2080
2081(defun eieiomt-method-list (method key class)
2082 "Return an alist list of methods lambdas.
2083METHOD is the method name.
2084KEY represents either :before, or :after methods.
2085CLASS is the starting class to search from in the method tree.
2086If CLASS is nil, then an empty list of methods should be returned."
2087 ;; Note: eieiomt - the MT means MethodTree. See more comments below
2088 ;; for the rest of the eieiomt methods.
2089 (let ((lambdas nil)
2090 (mclass (list class)))
2091 (while mclass
2092 ;; Note: a nil can show up in the class list once we start
2093 ;; searching through the method tree.
2094 (when (car mclass)
2095 ;; lookup the form to use for the PRIMARY object for the next level
2096 (let ((tmpl (eieio-generic-form method key (car mclass))))
2097 (when (or (not lambdas)
2098 ;; This prevents duplicates coming out of the
2099 ;; class method optimizer. Perhaps we should
2100 ;; just not optimize before/afters?
2101 (not (eq (car tmpl) (car (car lambdas)))))
2102 (setq lambdas (cons tmpl lambdas))
2103 (if (null (car lambdas))
2104 (setq lambdas (cdr lambdas))))))
2105 ;; Add new classes to mclass. Since our input might not be a class
2106 ;; protect against that.
2107 (if (car mclass)
2108 ;; If there is a class, append any methods it may provide
2109 ;; to the remainder of the class list.
2110 (let ((io (class-method-invocation-order (car mclass))))
2111 (if (eq io :depth-first)
2112 ;; Depth first.
2113 (setq mclass (append (eieiomt-next (car mclass)) (cdr mclass)))
2114 ;; Breadth first.
2115 (setq mclass (append (cdr mclass) (eieiomt-next (car mclass)))))
2116 )
2117 ;; Advance to next entry in mclass if it is nil.
2118 (setq mclass (cdr mclass)))
2119 )
2120 (if (eq key method-after)
2121 lambdas
2122 (nreverse lambdas))))
2123
2124(defun next-method-p ()
2125 "Non-nil if there is a next method.
2126Returns a list of lambda expressions which is the `next-method'
2127order."
2128 eieio-generic-call-next-method-list)
2129
2130(defun call-next-method (&rest replacement-args)
2131 "Call the superclass method from a subclass method.
2132The superclass method is specified in the current method list,
2133and is called the next method.
2134
2135If REPLACEMENT-ARGS is non-nil, then use them instead of
2136`eieio-generic-call-arglst'. The generic arg list are the
2137arguments passed in at the top level.
2138
2139Use `next-method-p' to find out if there is a next method to call."
2140 (if (not scoped-class)
2141 (error "Call-next-method not called within a class specific method"))
2142 (if (and (/= eieio-generic-call-key method-primary)
2143 (/= eieio-generic-call-key method-static))
2144 (error "Cannot `call-next-method' except in :primary or :static methods")
2145 )
2146 (let ((newargs (or replacement-args eieio-generic-call-arglst))
2147 (next (car eieio-generic-call-next-method-list))
2148 )
2149 (if (or (not next) (not (car next)))
2150 (apply 'no-next-method (car newargs) (cdr newargs))
2151 (let* ((eieio-generic-call-next-method-list
2152 (cdr eieio-generic-call-next-method-list))
2153 (scoped-class (cdr next))
2154 (fcn (car next))
2155 )
2156 (apply fcn newargs)
2157 ))))
2158\f
2159;;;
2160;; eieio-method-tree : eieiomt-
2161;;
2162;; Stored as eieio-method-tree in property list of a generic method
2163;;
2164;; (eieio-method-tree . [BEFORE PRIMARY AFTER
2165;; genericBEFORE genericPRIMARY genericAFTER])
2166;; and
2167;; (eieio-method-obarray . [BEFORE PRIMARY AFTER
2168;; genericBEFORE genericPRIMARY genericAFTER])
2169;; where the association is a vector.
2170;; (aref 0 -- all static methods.
2171;; (aref 1 -- all methods classified as :before
2172;; (aref 2 -- all methods classified as :primary
2173;; (aref 3 -- all methods classified as :after
2174;; (aref 4 -- a generic classified as :before
2175;; (aref 5 -- a generic classified as :primary
2176;; (aref 6 -- a generic classified as :after
2177;;
2178(defvar eieiomt-optimizing-obarray nil
2179 "While mapping atoms, this contain the obarray being optimized.")
2180
2181(defun eieiomt-install (method-name)
2182 "Install the method tree, and obarray onto METHOD-NAME.
2183Do not do the work if they already exist."
2184 (let ((emtv (get method-name 'eieio-method-tree))
2185 (emto (get method-name 'eieio-method-obarray)))
2186 (if (or (not emtv) (not emto))
2187 (progn
2188 (setq emtv (put method-name 'eieio-method-tree
2189 (make-vector method-num-slots nil))
2190 emto (put method-name 'eieio-method-obarray
2191 (make-vector method-num-slots nil)))
2192 (aset emto 0 (make-vector 11 0))
2193 (aset emto 1 (make-vector 11 0))
2194 (aset emto 2 (make-vector 41 0))
2195 (aset emto 3 (make-vector 11 0))
2196 ))))
2197
2198(defun eieiomt-add (method-name method key class)
2199 "Add to METHOD-NAME the forms METHOD in a call position KEY for CLASS.
2200METHOD-NAME is the name created by a call to `defgeneric'.
2201METHOD are the forms for a given implementation.
2202KEY is an integer (see comment in eieio.el near this function) which
2203is associated with the :static :before :primary and :after tags.
2204It also indicates if CLASS is defined or not.
2205CLASS is the class this method is associated with."
2206 (if (or (> key method-num-slots) (< key 0))
2207 (error "Eieiomt-add: method key error!"))
2208 (let ((emtv (get method-name 'eieio-method-tree))
2209 (emto (get method-name 'eieio-method-obarray)))
2210 ;; Make sure the method tables are available.
2211 (if (or (not emtv) (not emto))
2212 (error "Programmer error: eieiomt-add"))
2213 ;; only add new cells on if it doesn't already exist!
2214 (if (assq class (aref emtv key))
2215 (setcdr (assq class (aref emtv key)) method)
2216 (aset emtv key (cons (cons class method) (aref emtv key))))
2217 ;; Add function definition into newly created symbol, and store
2218 ;; said symbol in the correct obarray, otherwise use the
2219 ;; other array to keep this stuff
2220 (if (< key method-num-lists)
2221 (let ((nsym (intern (symbol-name class) (aref emto key))))
2222 (fset nsym method)))
2223 ;; Now optimize the entire obarray
2224 (if (< key method-num-lists)
2225 (let ((eieiomt-optimizing-obarray (aref emto key)))
2226 ;; @todo - Is this overkill? Should we just clear the symbol?
2227 (mapatoms 'eieiomt-sym-optimize eieiomt-optimizing-obarray)))
2228 ))
2229
2230(defun eieiomt-next (class)
2231 "Return the next parent class for CLASS.
2232If CLASS is a superclass, return variable `eieio-default-superclass'. If CLASS
2233is variable `eieio-default-superclass' then return nil. This is different from
2234function `class-parent' as class parent returns nil for superclasses. This
2235function performs no type checking!"
2236 ;; No type-checking because all calls are made from functions which
2237 ;; are safe and do checking for us.
2238 (or (class-parents-fast class)
2239 (if (eq class 'eieio-default-superclass)
2240 nil
2241 '(eieio-default-superclass))))
2242
2243(defun eieiomt-sym-optimize (s)
2244 "Find the next class above S which has a function body for the optimizer."
2245 ;; (message "Optimizing %S" s)
2246 (let* ((es (intern-soft (symbol-name s))) ;external symbol of class
2247 (io (class-method-invocation-order es))
2248 (ov nil)
2249 (cont t))
2250 ;; This converts ES from a single symbol to a list of parent classes.
2251 (setq es (eieiomt-next es))
2252 ;; Loop over ES, then it's children individually.
2253 ;; We can have multiple hits only at one level of the parent tree.
2254 (while (and es cont)
2255 (setq ov (intern-soft (symbol-name (car es)) eieiomt-optimizing-obarray))
2256 (if (fboundp ov)
2257 (progn
2258 (set s ov) ;store ov as our next symbol
2259 (setq cont nil))
2260 (if (eq io :depth-first)
2261 ;; Pre-pend the subclasses of (car es) so we get
2262 ;; DEPTH FIRST optimization.
2263 (setq es (append (eieiomt-next (car es)) (cdr es)))
2264 ;; Else, we are breadth first.
2265 ;; (message "Class %s is breadth first" es)
2266 (setq es (append (cdr es) (eieiomt-next (car es))))
2267 )))
2268 ;; If there is no nearest call, then set our value to nil
2269 (if (not es) (set s nil))
2270 ))
2271
2272(defun eieio-generic-form (method key class)
2273 "Return the lambda form belonging to METHOD using KEY based upon CLASS.
2274If CLASS is not a class then use `generic' instead. If class has no
2275form, but has a parent class, then trace to that parent class. The
2276first time a form is requested from a symbol, an optimized path is
2277memoized for future faster use."
2278 (let ((emto (aref (get method 'eieio-method-obarray)
2279 (if class key (+ key 3)))))
2280 (if (class-p class)
2281 ;; 1) find our symbol
2282 (let ((cs (intern-soft (symbol-name class) emto)))
2283 (if (not cs)
2284 ;; 2) If there isn't one, then make one.
2285 ;; This can be slow since it only occurs once
2286 (progn
2287 (setq cs (intern (symbol-name class) emto))
2288 ;; 2.1) Cache it's nearest neighbor with a quick optimize
2289 ;; which should only occur once for this call ever
2290 (let ((eieiomt-optimizing-obarray emto))
2291 (eieiomt-sym-optimize cs))))
2292 ;; 3) If it's bound return this one.
2293 (if (fboundp cs)
2294 (cons cs (aref (class-v class) class-symbol))
2295 ;; 4) If it's not bound then this variable knows something
2296 (if (symbol-value cs)
2297 (progn
2298 ;; 4.1) This symbol holds the next class in it's value
2299 (setq class (symbol-value cs)
2300 cs (intern-soft (symbol-name class) emto))
2301 ;; 4.2) The optimizer should always have chosen a
2302 ;; function-symbol
2303 ;;(if (fboundp cs)
2304 (cons cs (aref (class-v (intern (symbol-name class)))
2305 class-symbol))
2306 ;;(error "EIEIO optimizer: erratic data loss!"))
2307 )
2308 ;; There never will be a funcall...
2309 nil)))
2310 ;; for a generic call, what is a list, is the function body we want.
2311 (let ((emtl (aref (get method 'eieio-method-tree)
2312 (if class key (+ key 3)))))
2313 (if emtl
2314 ;; The car of EMTL is supposed to be a class, which in this
2315 ;; case is nil, so skip it.
2316 (cons (cdr (car emtl)) nil)
2317 nil)))))
2318
2319;;;
2320;; Way to assign slots based on a list. Used for constructors, or
2321;; even resetting an object at run-time
2322;;
2323(defun eieio-set-defaults (obj &optional set-all)
2324 "Take object OBJ, and reset all slots to their defaults.
2325If SET-ALL is non-nil, then when a default is nil, that value is
2326reset. If SET-ALL is nil, the slots are only reset if the default is
2327not nil."
2328 (let ((scoped-class (aref obj object-class))
2329 (eieio-initializing-object t)
2330 (pub (aref (class-v (aref obj object-class)) class-public-a)))
2331 (while pub
2332 (let ((df (eieio-oref-default obj (car pub))))
2333 (if (or df set-all)
2334 (eieio-oset obj (car pub) df)))
2335 (setq pub (cdr pub)))))
2336
2337(defun eieio-initarg-to-attribute (class initarg)
2338 "For CLASS, convert INITARG to the actual attribute name.
2339If there is no translation, pass it in directly (so we can cheat if
2340need be.. May remove that later...)"
2341 (let ((tuple (assoc initarg (aref (class-v class) class-initarg-tuples))))
2342 (if tuple
2343 (cdr tuple)
2344 nil)))
2345
2346(defun eieio-attribute-to-initarg (class attribute)
2347 "In CLASS, convert the ATTRIBUTE into the corresponding init argument tag.
2348This is usually a symbol that starts with `:'."
2349 (let ((tuple (rassoc attribute (aref (class-v class) class-initarg-tuples))))
2350 (if tuple
2351 (car tuple)
2352 nil)))
2353
2354\f
2355;;; Here are some special types of errors
2356;;
2357(intern "no-method-definition")
2358(put 'no-method-definition 'error-conditions '(no-method-definition error))
2359(put 'no-method-definition 'error-message "No method definition")
2360
2361(intern "no-next-method")
2362(put 'no-next-method 'error-conditions '(no-next-method error))
2363(put 'no-next-method 'error-message "No next method")
2364
2365(intern "invalid-slot-name")
2366(put 'invalid-slot-name 'error-conditions '(invalid-slot-name error))
2367(put 'invalid-slot-name 'error-message "Invalid slot name")
2368
2369(intern "invalid-slot-type")
2370(put 'invalid-slot-type 'error-conditions '(invalid-slot-type error nil))
2371(put 'invalid-slot-type 'error-message "Invalid slot type")
2372
2373(intern "unbound-slot")
2374(put 'unbound-slot 'error-conditions '(unbound-slot error nil))
2375(put 'unbound-slot 'error-message "Unbound slot")
2376
2377;;; Here are some CLOS items that need the CL package
2378;;
2379
2380(defsetf slot-value (obj slot) (store) (list 'eieio-oset obj slot store))
2381(defsetf eieio-oref (obj slot) (store) (list 'eieio-oset obj slot store))
2382
2383;; The below setf method was written by Arnd Kohrs <kohrs@acm.org>
2384(define-setf-method oref (obj slot)
2385 (let ((obj-temp (gensym))
2386 (slot-temp (gensym))
2387 (store-temp (gensym)))
2388 (list (list obj-temp slot-temp)
2389 (list obj `(quote ,slot))
2390 (list store-temp)
2391 (list 'set-slot-value obj-temp slot-temp
2392 store-temp)
2393 (list 'slot-value obj-temp slot-temp))))
2394
2395\f
2396;;;
2397;; We want all objects created by EIEIO to have some default set of
2398;; behaviours so we can create object utilities, and allow various
2399;; types of error checking. To do this, create the default EIEIO
2400;; class, and when no parent class is specified, use this as the
2401;; default. (But don't store it in the other classes as the default,
2402;; allowing for transparent support.)
2403;;
2404
2405(defclass eieio-default-superclass nil
2406 nil
2407 "Default parent class for classes with no specified parent class.
2408Its slots are automatically adopted by classes with no specified
2409parents. This class is not stored in the `parent' slot of a class vector."
2410 :abstract t)
2411
2412(defalias 'standard-class 'eieio-default-superclass)
2413
2414(defgeneric constructor (class newname &rest slots)
2415 "Default constructor for CLASS `eieio-defualt-superclass'.")
2416
2417(defmethod constructor :static
2418 ((class eieio-default-superclass) newname &rest slots)
2419 "Default constructor for CLASS `eieio-defualt-superclass'.
2420NEWNAME is the name to be given to the constructed object.
2421SLOTS are the initialization slots used by `shared-initialize'.
2422This static method is called when an object is constructed.
2423It allocates the vector used to represent an EIEIO object, and then
2424calls `shared-initialize' on that object."
2425 (let* ((new-object (copy-sequence (aref (class-v class)
2426 class-default-object-cache))))
2427 ;; Update the name for the newly created object.
2428 (aset new-object object-name newname)
2429 ;; Call the initialize method on the new object with the slots
2430 ;; that were passed down to us.
2431 (initialize-instance new-object slots)
2432 ;; Return the created object.
2433 new-object))
2434
2435(defgeneric shared-initialize (obj slots)
2436 "Set slots of OBJ with SLOTS which is a list of name/value pairs.
2437Called from the constructor routine.")
2438
2439(defmethod shared-initialize ((obj eieio-default-superclass) slots)
2440 "Set slots of OBJ with SLOTS which is a list of name/value pairs.
2441Called from the constructor routine."
2442 (let ((scoped-class (aref obj object-class)))
2443 (while slots
2444 (let ((rn (eieio-initarg-to-attribute (object-class-fast obj)
2445 (car slots))))
2446 (if (not rn)
2447 (slot-missing obj (car slots) 'oset (car (cdr slots)))
2448 (eieio-oset obj rn (car (cdr slots)))))
2449 (setq slots (cdr (cdr slots))))))
2450
2451(defgeneric initialize-instance (this &optional slots)
2452 "Constructs the new object THIS based on SLOTS.")
2453
2454(defmethod initialize-instance ((this eieio-default-superclass)
2455 &optional slots)
2456 "Constructs the new object THIS based on SLOTS.
2457SLOTS is a tagged list where odd numbered elements are tags, and
2458even numbered elements are the values to store in the tagged slot. If
2459you overload the `initialize-instance', there you will need to call
2460`shared-initialize' yourself, or you can call `call-next-method' to
2461have this constructor called automatically. If these steps are not
2462taken, then new objects of your class will not have their values
2463dynamically set from SLOTS."
2464 ;; First, see if any of our defaults are `lambda', and
2465 ;; re-evaluate them and apply the value to our slots.
2466 (let* ((scoped-class (class-v (aref this object-class)))
2467 (slot (aref scoped-class class-public-a))
2468 (defaults (aref scoped-class class-public-d)))
2469 (while slot
2470 (setq slot (cdr slot)
2471 defaults (cdr defaults))))
2472 ;; Shared initialize will parse our slots for us.
2473 (shared-initialize this slots))
2474
2475(defgeneric slot-missing (object slot-name operation &optional new-value)
2476 "Method invoked when an attempt to access a slot in OBJECT fails.")
2477
2478(defmethod slot-missing ((object eieio-default-superclass) slot-name
2479 operation &optional new-value)
2480 "Method invoked when an attempt to access a slot in OBJECT fails.
2481SLOT-NAME is the name of the failed slot, OPERATION is the type of access
2482that was requested, and optional NEW-VALUE is the value that was desired
2483to be set.
2484
2485This method is called from `oref', `oset', and other functions which
2486directly reference slots in EIEIO objects."
2487 (signal 'invalid-slot-name (list (object-name object)
2488 slot-name)))
2489
2490(defgeneric slot-unbound (object class slot-name fn)
2491 "Slot unbound is invoked during an attempt to reference an unbound slot.")
2492
2493(defmethod slot-unbound ((object eieio-default-superclass)
2494 class slot-name fn)
2495 "Slot unbound is invoked during an attempt to reference an unbound slot.
2496OBJECT is the instance of the object being reference. CLASS is the
2497class of OBJECT, and SLOT-NAME is the offending slot. This function
2498throws the signal `unbound-slot'. You can overload this function and
2499return the value to use in place of the unbound value.
2500Argument FN is the function signaling this error.
2501Use `slot-boundp' to determine if a slot is bound or not.
2502
2503In CLOS, the argument list is (CLASS OBJECT SLOT-NAME), but
2504EIEIO can only dispatch on the first argument, so the first two are swapped."
2505 (signal 'unbound-slot (list (class-name class) (object-name object)
2506 slot-name fn)))
2507
2508(defgeneric no-applicable-method (object method &rest args)
2509 "Called if there are no implementations for OBJECT in METHOD.")
2510
2511(defmethod no-applicable-method ((object eieio-default-superclass)
2512 method &rest args)
2513 "Called if there are no implementations for OBJECT in METHOD.
2514OBJECT is the object which has no method implementation.
2515ARGS are the arguments that were passed to METHOD.
2516
2517Implement this for a class to block this signal. The return
2518value becomes the return value of the original method call."
2519 (signal 'no-method-definition (list method (object-name object)))
2520 )
2521
2522(defgeneric no-next-method (object &rest args)
2523"Called from `call-next-method' when no additional methods are available.")
2524
2525(defmethod no-next-method ((object eieio-default-superclass)
2526 &rest args)
2527 "Called from `call-next-method' when no additional methods are available.
2528OBJECT is othe object being called on `call-next-method'.
2529ARGS are the arguments it is called by.
2530This method signals `no-next-method' by default. Override this
2531method to not throw an error, and it's return value becomes the
2532return value of `call-next-method'."
2533 (signal 'no-next-method (list (object-name object) args))
2534)
2535
2536(defgeneric clone (obj &rest params)
2537 "Make a copy of OBJ, and then supply PARAMS.
2538PARAMS is a parameter list of the same form used by `initialize-instance'.
2539
2540When overloading `clone', be sure to call `call-next-method'
2541first and modify the returned object.")
2542
2543(defmethod clone ((obj eieio-default-superclass) &rest params)
2544 "Make a copy of OBJ, and then apply PARAMS."
2545 (let ((nobj (copy-sequence obj))
2546 (nm (aref obj object-name))
2547 (passname (and params (stringp (car params))))
2548 (num 1))
2549 (if params (shared-initialize nobj (if passname (cdr params) params)))
2550 (if (not passname)
2551 (save-match-data
2552 (if (string-match "-\\([0-9]+\\)" nm)
2553 (setq num (1+ (string-to-number (match-string 1 nm)))
2554 nm (substring nm 0 (match-beginning 0))))
2555 (aset nobj object-name (concat nm "-" (int-to-string num))))
2556 (aset nobj object-name (car params)))
2557 nobj))
2558
2559(defgeneric destructor (this &rest params)
2560 "Destructor for cleaning up any dynamic links to our object.")
2561
2562(defmethod destructor ((this eieio-default-superclass) &rest params)
2563 "Destructor for cleaning up any dynamic links to our object.
2564Argument THIS is the object being destroyed. PARAMS are additional
2565ignored parameters."
2566 ;; No cleanup... yet.
2567 )
2568
2569(defgeneric object-print (this &rest strings)
2570 "Pretty printer for object THIS. Call function `object-name' with STRINGS.
2571
2572It is sometimes useful to put a summary of the object into the
2573default #<notation> string when using eieio browsing tools.
2574Implement this method to customize the summary.")
2575
2576(defmethod object-print ((this eieio-default-superclass) &rest strings)
2577 "Pretty printer for object THIS. Call function `object-name' with STRINGS.
2578The default method for printing object THIS is to use the
2579function `object-name'.
2580
2581It is sometimes useful to put a summary of the object into the
2582default #<notation> string when using eieio browsing tools.
2583
2584Implement this function and specify STRINGS in a call to
2585`call-next-method' to provide additional summary information.
2586When passing in extra strings from child classes, always remember
2587to prepend a space."
2588 (object-name this (apply 'concat strings)))
2589
2590(defvar eieio-print-depth 0
2591 "When printing, keep track of the current indentation depth.")
2592
2593(defgeneric object-write (this &optional comment)
2594 "Write out object THIS to the current stream.
2595Optional COMMENDS will add comments to the beginning of the output.")
2596
2597(defmethod object-write ((this eieio-default-superclass) &optional comment)
2598 "Write object THIS out to the current stream.
2599This writes out the vector version of this object. Complex and recursive
2600object are discouraged from being written.
2601 If optional COMMENT is non-nil, include comments when outputting
2602this object."
2603 (when comment
2604 (princ ";; Object ")
2605 (princ (object-name-string this))
2606 (princ "\n")
2607 (princ comment)
2608 (princ "\n"))
2609 (let* ((cl (object-class this))
2610 (cv (class-v cl)))
2611 ;; Now output readable lisp to recreate this object
2612 ;; It should look like this:
2613 ;; (<constructor> <name> <slot> <slot> ... )
2614 ;; Each slot's slot is writen using its :writer.
2615 (princ (make-string (* eieio-print-depth 2) ? ))
2616 (princ "(")
2617 (princ (symbol-name (class-constructor (object-class this))))
2618 (princ " \"")
2619 (princ (object-name-string this))
2620 (princ "\"\n")
2621 ;; Loop over all the public slots
2622 (let ((publa (aref cv class-public-a))
2623 (publd (aref cv class-public-d))
2624 (publp (aref cv class-public-printer))
2625 (eieio-print-depth (1+ eieio-print-depth)))
2626 (while publa
2627 (when (slot-boundp this (car publa))
2628 (let ((i (class-slot-initarg cl (car publa)))
2629 (v (eieio-oref this (car publa)))
2630 )
2631 (unless (or (not i) (equal v (car publd)))
2632 (princ (make-string (* eieio-print-depth 2) ? ))
2633 (princ (symbol-name i))
2634 (princ " ")
2635 (if (car publp)
2636 ;; Use our public printer
2637 (funcall (car publp) v)
2638 ;; Use our generic override prin1 function.
2639 (eieio-override-prin1 v))
2640 (princ "\n"))))
2641 (setq publa (cdr publa) publd (cdr publd)
2642 publp (cdr publp)))
2643 (princ (make-string (* eieio-print-depth 2) ? )))
2644 (princ ")\n")))
2645
2646(defun eieio-override-prin1 (thing)
2647 "Perform a prin1 on THING taking advantage of object knowledge."
2648 (cond ((eieio-object-p thing)
2649 (object-write thing))
2650 ((listp thing)
2651 (eieio-list-prin1 thing))
2652 ((class-p thing)
2653 (princ (class-name thing)))
2654 ((symbolp thing)
2655 (princ (concat "'" (symbol-name thing))))
2656 (t (prin1 thing))))
2657
2658(defun eieio-list-prin1 (list)
2659 "Display LIST where list may contain objects."
2660 (if (not (eieio-object-p (car list)))
2661 (progn
2662 (princ "'")
2663 (prin1 list))
2664 (princ "(list ")
2665 (if (eieio-object-p (car list)) (princ "\n "))
2666 (while list
2667 (if (eieio-object-p (car list))
2668 (object-write (car list))
2669 (princ "'")
2670 (prin1 (car list)))
2671 (princ " ")
2672 (setq list (cdr list)))
2673 (princ (make-string (* eieio-print-depth 2) ? ))
2674 (princ ")")))
2675
2676\f
2677;;; Unimplemented functions from CLOS
2678;;
2679(defun change-class (obj class)
2680 "Change the class of OBJ to type CLASS.
2681This may create or delete slots, but does not affect the return value
2682of `eq'."
2683 (error "Eieio: `change-class' is unimplemented"))
2684
2685)
2686
2687\f
2688;;; Interfacing with edebug
2689;;
2690(defun eieio-edebug-prin1-to-string (object &optional noescape)
2691 "Display eieio OBJECT in fancy format. Overrides the edebug default.
2692Optional argument NOESCAPE is passed to `prin1-to-string' when appropriate."
2693 (cond ((class-p object) (class-name object))
2694 ((eieio-object-p object) (object-print object))
2695 ((and (listp object) (or (class-p (car object))
2696 (eieio-object-p (car object))))
2697 (concat "(" (mapconcat 'eieio-edebug-prin1-to-string object " ") ")"))
2698 (t (prin1-to-string object noescape))))
2699
2700(add-hook 'edebug-setup-hook
2701 (lambda ()
2702 (def-edebug-spec defmethod
2703 (&define ; this means we are defining something
2704 [&or name ("setf" :name setf name)]
2705 ;; ^^ This is the methods symbol
2706 [ &optional symbolp ] ; this is key :before etc
2707 list ; arguments
2708 [ &optional stringp ] ; documentation string
2709 def-body ; part to be debugged
2710 ))
2711 ;; The rest of the macros
2712 (def-edebug-spec oref (form quote))
2713 (def-edebug-spec oref-default (form quote))
2714 (def-edebug-spec oset (form quote form))
2715 (def-edebug-spec oset-default (form quote form))
2716 (def-edebug-spec class-v form)
2717 (def-edebug-spec class-p form)
2718 (def-edebug-spec eieio-object-p form)
2719 (def-edebug-spec class-constructor form)
2720 (def-edebug-spec generic-p form)
2721 (def-edebug-spec with-slots (list list def-body))
2722 ;; I suspect this isn't the best way to do this, but when
2723 ;; cust-print was used on my system all my objects
2724 ;; appeared as "#1 =" which was not useful. This allows
2725 ;; edebug to print my objects in the nice way they were
2726 ;; meant to with `object-print' and `class-name'
2727 ;; (defalias 'edebug-prin1-to-string 'eieio-edebug-prin1-to-string)
2728 )
2729 )
2730
6dd12ef2
CY
2731;;; Interfacing with imenu in emacs lisp mode
2732;; (Only if the expression is defined)
2733;;
2734(if (eval-when-compile (boundp 'list-imenu-generic-expression))
2735(progn
2736
2737(defun eieio-update-lisp-imenu-expression ()
2738 "Examine `lisp-imenu-generic-expression' and modify it to find `defmethod'."
2739 (let ((exp lisp-imenu-generic-expression))
2740 (while exp
2741 ;; it's of the form '( ( title expr indx ) ... )
2742 (let* ((subcar (cdr (car exp)))
2743 (substr (car subcar)))
2744 (if (and (not (string-match "|method\\\\" substr))
2745 (string-match "|advice\\\\" substr))
2746 (setcar subcar
2747 (replace-match "|advice\\|method\\" t t substr 0))))
2748 (setq exp (cdr exp)))))
2749
2750(eieio-update-lisp-imenu-expression)
2751
2752))
2753
2754;;; Autoloading some external symbols, and hooking into the help system
2755;;
2756
2757(autoload 'eieio-help-mode-augmentation-maybee "eieio-opt" "For buffers thrown into help mode, augment for eieio.")
2758(autoload 'eieio-browse "eieio-opt" "Create an object browser window" t)
2759(autoload 'eieio-describe-class "eieio-opt" "Describe CLASS defined by a string or symbol" t)
2760(autoload 'eieio-describe-constructor "eieio-opt" "Describe the constructor function FCN." t)
2761(autoload 'describe-class "eieio-opt" "Describe CLASS defined by a string or symbol" t)
2762(autoload 'eieio-describe-generic "eieio-opt" "Describe GENERIC defined by a string or symbol" t)
2763(autoload 'describe-generic "eieio-opt" "Describe GENERIC defined by a string or symbol" t)
2764
2765(autoload 'customize-object "eieio-custom" "Create a custom buffer editing OBJ.")
2766
2767(provide 'eieio)
2768
2769;; Local variables:
2770;; byte-compile-warnings: (not cl-functions)
2771;; End:
2772
2773;;; eieio ends here